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CN111161516A - Low-power-consumption electronic cigarette anti-loss method, computer-readable storage medium and electronic cigarette - Google Patents

Low-power-consumption electronic cigarette anti-loss method, computer-readable storage medium and electronic cigarette Download PDF

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Publication number
CN111161516A
CN111161516A CN201911351274.4A CN201911351274A CN111161516A CN 111161516 A CN111161516 A CN 111161516A CN 201911351274 A CN201911351274 A CN 201911351274A CN 111161516 A CN111161516 A CN 111161516A
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China
Prior art keywords
electronic cigarette
information
mobile terminal
working state
state information
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CN201911351274.4A
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Chinese (zh)
Inventor
董申恩
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Shenzhen Ske Technology Co ltd
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Shenzhen Ske Technology Co ltd
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Priority to CN201911351274.4A priority Critical patent/CN111161516A/en
Publication of CN111161516A publication Critical patent/CN111161516A/en
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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • G08B21/24Reminder alarms, e.g. anti-loss alarms
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/10Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using wireless transmission systems

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  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Telephone Function (AREA)

Abstract

A low-power consumption electronic cigarette anti-lost method and a device thereof comprise the following steps: judging whether the electronic cigarette acquires the working state information or not; if the electronic cigarette obtains the working state information, closing the internal communication module and entering a working mode; if the electronic cigarette does not acquire the working state information, starting an internal communication module and entering an anti-loss mode; if the electronic cigarette is in the anti-lost mode, establishing wireless communication connection between the electronic cigarette and the mobile terminal; taking an instruction signal from a mobile terminal, and identifying whether the instruction signal carries alarm information or not; if the instruction signal carries alarm information, starting an internal alarm of the electronic cigarette to alarm; closing the internal communication module under the working mode; under the loss prevention mode, the internal communication module is started, the communication connection between the internal communication module and the mobile terminal is established, the alarm is given according to the alarm information carried by the instruction signal from the mobile terminal, the power consumption of the electronic cigarette is reduced, the cruising ability of the power supply is improved, and the user experience is improved.

Description

Low-power-consumption electronic cigarette anti-loss method, computer-readable storage medium and electronic cigarette
Technical Field
The invention belongs to the technical field of electronic cigarettes, and particularly relates to a low-power-consumption electronic cigarette anti-loss method, a computer-readable storage medium and an electronic cigarette.
Background
The electronic cigarette is an electronic product simulating a cigarette, and has the same appearance, smoke, taste and sensation as the cigarette. It is a product which is absorbed by users after nicotine and the like are changed into steam by means of atomization and the like. As an electronic product replacing tobacco, in most application environments, an electronic cigarette is often carried to everywhere by a user for use when needed, but the user often encounters the problems that the user cannot find the electronic cigarette, cannot judge the position of the electronic cigarette, and knows whether the electronic cigarette is lost, etc. because the user does not use the electronic cigarette and changes the object carried by the user. The traditional method for quickly positioning the position of the electronic cigarette mostly adopts a GPS (global positioning system) positioning method, cannot be effectively applied to an indoor environment, is complex in positioning mode, needs a positioning chip or a sensor, is high in cost, and is inconvenient for a user to quickly find the electronic cigarette when the electronic cigarette is forgotten at a certain corner or inside a certain clothes pocket; in addition, because in the conventional electronic cigarette anti-loss technology, the power consumption of the electronic cigarette during working is large, and the battery power supply volume limited by the electronic cigarette cannot be too large, so that the battery power supply endurance of the electronic cigarette is poor, and when the electronic cigarette cannot be charged in time to supplement electric energy, the electronic cigarette cannot be used, and poor experience is caused to the use of the electronic cigarette.
Therefore, the positioning error of the electronic cigarette in the traditional technical scheme is not convenient for a user to quickly find, and the endurance of the electronic cigarette is poor, so that the problem of poor use experience is caused.
Disclosure of Invention
In view of this, embodiments of the present invention provide a low-power consumption electronic cigarette anti-lost method and apparatus, which aim to solve the problems that in the conventional technical scheme, the positioning error of an electronic cigarette is large, and the electronic cigarette is not convenient for a user to find quickly, and the endurance of the electronic cigarette is poor, which results in poor use experience.
The first aspect of the embodiment of the present invention provides a low power consumption electronic cigarette anti-lost method, which includes the following steps:
judging whether the working state information of the electronic cigarette is acquired or not;
if the working state information of the electronic cigarette is acquired, closing the internal communication module and entering a working mode;
if the working state information of the electronic cigarette is not acquired, starting the internal communication module and entering an anti-loss mode;
if the electronic cigarette is in the anti-lost mode, establishing wireless communication connection with a mobile terminal, acquiring an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information or not;
and if the instruction signal carries alarm information, starting an internal alarm of the electronic cigarette to alarm.
In specific implementation, the working state information includes any one or any combination of multiple kinds of three-dimensional acceleration information, power output information, power charging information, key triggering information and pneumatic sensor triggering information of a built-in three-dimensional acceleration sensor;
if the working state information of the electronic cigarette is acquired, the internal communication module is closed, and the working mode is specifically as follows: and if at least one of the three-dimensional acceleration information, the power output information, the power charging information, the key triggering information and the pneumatic sensor triggering information of the built-in three-dimensional acceleration sensor is acquired, closing the internal communication module and entering a working mode.
In one embodiment, the determining whether the electronic cigarette acquires the operating state information includes the following steps:
acquiring three-dimensional acceleration information of a three-dimensional acceleration sensor built in the electronic cigarette; if the three-dimensional acceleration information is larger than a preset acceleration threshold, the electronic cigarette obtains working state information;
if the three-dimensional acceleration information is not larger than the preset acceleration threshold, the electronic cigarette does not acquire working state information;
or the like, or, alternatively,
acquiring current output information of a power supply of the electronic cigarette;
if the current output information is larger than a preset current output threshold value, the electronic cigarette acquires working state information;
if the current output information is not greater than the preset current output threshold, the electronic cigarette does not acquire working state information;
or the like, or, alternatively,
acquiring power supply charging information of the power supply of the electronic cigarette;
if the power supply charging information exists, the electronic cigarette acquires working state information;
if the power supply charging information does not exist, the electronic cigarette does not acquire the working state information;
or the like, or, alternatively,
acquiring trigger information of an electronic cigarette key;
if the key triggering information exists, the electronic cigarette acquires working state information;
if the key triggering information does not exist, the electronic cigarette does not acquire the working state information;
or the like, or, alternatively,
acquiring trigger information of a pneumatic sensor arranged in the electronic cigarette;
if the trigger information of the pneumatic sensor exists, the electronic cigarette acquires working state information;
and if the pneumatic sensor trigger information does not exist, the electronic cigarette does not acquire the working state information.
In one embodiment, after acquiring the operating state information, the method further includes:
judging whether the working state information of the electronic cigarette is obtained again at intervals of first preset time;
if the working state information of the electronic cigarette is obtained again at intervals of first preset time, closing the internal communication module and entering a working mode;
and if the working state information of the electronic cigarette is not acquired at the interval of the first preset time, starting an internal communication module and entering an anti-loss mode.
In one embodiment, after the step of acquiring the instruction signal from the mobile terminal and identifying whether the instruction signal carries the alarm information, the method further includes:
if the instruction information does not carry alarm information, the electronic cigarette detects and acquires the communication signal intensity with the mobile terminal;
and if the wireless communication connection is disconnected, starting an internal alarm of the electronic cigarette to alarm.
In one embodiment, after the step of acquiring the instruction signal from the mobile terminal and identifying whether the instruction signal carries the alarm information, the method further includes:
if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of a communication signal with the electronic cigarette;
and if the wireless communication connection is disconnected, the mobile terminal collects the position information of the current mobile terminal and stores the position information into a preset electronic cigarette position database of the mobile terminal.
In one embodiment, if the wireless communication connection is disconnected, the step of acquiring, by the mobile terminal, the position information of the current mobile terminal and storing the position information in the electronic cigarette position database of the mobile terminal further includes:
and if the preset electronic cigarette position database stores old version position information, replacing the old version position information with the current position information.
In one embodiment, after the step of acquiring the instruction signal from the mobile terminal and identifying whether the instruction signal carries the alarm information, the method further includes:
if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of the communication signal;
and if the wireless communication connection is disconnected, the mobile terminal collects communication signal intensity change information in a second preset time period and position information corresponding to the mobile terminal, and acquires the position information of the electronic cigarette according to the position information corresponding to the mobile terminal.
A second aspect of the embodiments of the present invention provides a low-power loss prevention device for an electronic cigarette, including a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor implements the steps of the low-power loss prevention method when executing the computer program.
A third aspect of embodiments of the present invention provides a computer-readable storage medium, which stores a computer program, and when the computer program is executed by a processor, the computer program implements the steps of the low-power consumption electronic cigarette anti-lost method as described above.
According to the low-power-consumption electronic cigarette anti-loss method, the working state information of the electronic cigarette is obtained, and when the electronic cigarette is judged to be in the working state according to the working state information, the internal communication module of the electronic cigarette is turned off to disconnect the communication connection with the mobile terminal, and the electronic cigarette enters a working mode; when the electronic cigarette is judged to be in a non-working state (such as a standby state) according to the working state information, starting wireless Bluetooth communication of the electronic cigarette so as to enable the electronic cigarette to be in wireless communication connection with the mobile terminal and enter an anti-lost mode, and under the anti-lost mode, acquiring an instruction signal from the mobile terminal and identifying that the instruction signal carries alarm information, starting an internal alarm of the electronic cigarette to alarm, so that the wireless Bluetooth communication is prevented from being started when the electronic cigarette is in the working state, the power consumption of the electronic cigarette is reduced, the cruising ability of an internal power supply of the electronic cigarette is improved, and the user experience is improved; meanwhile, when the electronic cigarette is in a non-working state, the electronic cigarette enters an anti-loss mode, bidirectional information interaction between the electronic cigarette and the mobile terminal is started, so that an instruction signal from the mobile terminal is obtained, an internal alarm is started to alarm according to alarm information carried by the instruction signal, the position of the electronic cigarette is quickly positioned, and therefore the electronic cigarette is quickly found to prevent the electronic cigarette from being lost.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without inventive exercise.
Fig. 1 is a schematic specific flowchart of an electronic cigarette anti-lost method with low power consumption according to an embodiment of the present invention;
fig. 2 is a schematic specific flowchart of an electronic cigarette anti-lost method with low power consumption according to an embodiment of the present invention;
fig. 3 is a schematic specific flowchart of an electronic cigarette anti-lost method with low power consumption according to an embodiment of the present invention;
fig. 4 is a schematic specific flowchart of an electronic cigarette anti-lost method with low power consumption according to an embodiment of the present invention;
fig. 5 is a schematic specific flowchart of an electronic cigarette anti-lost method with low power consumption according to an embodiment of the present invention;
fig. 6 is a schematic specific flowchart of a low-power consumption electronic cigarette anti-lost method according to an embodiment of the present invention;
fig. 7 is a schematic structural diagram of a low-power loss prevention device of an electronic cigarette according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The invention provides an electronic cigarette which comprises a memory, a processor, a power supply, a wireless communicator and an alarm, wherein the wireless communicator can select one or more of a Bluetooth module, a wifi module, an RFID wireless radio frequency module, an infrared receiver and the like and is used for establishing electric connection with a mobile terminal. It can be understood that, in the practical application process, the mobile terminal may be any one of a smart phone, a tablet computer, a smart band, a smart ring, and a wireless remote controller, and the embodiment of the present invention is not limited at all. The electronic cigarette control program is stored in the memory, the processor is used for executing the electronic cigarette control program stored in the memory, and when the processor executes the electronic cigarette control program stored in the memory, the electronic cigarette anti-loss method with low power consumption can be realized.
Referring to fig. 1, a flow chart of a low power consumption electronic cigarette anti-lost method according to an embodiment of the present invention is schematically shown, and for convenience of description, only the parts related to the embodiment are shown, and detailed descriptions are as follows:
the first aspect of the embodiment of the invention provides a low-power-consumption electronic cigarette anti-lost method, which comprises the following steps:
step S101: and judging whether the working state information of the electronic cigarette is acquired.
Step S102: and if the working state information of the electronic cigarette is acquired, closing the internal communication module and entering a working mode.
In specific implementation, optionally, step S101 may include four cases:
in the first case, if a three-dimensional acceleration sensor is further built in the electronic cigarette as a control switch, the three-dimensional acceleration sensor is used for detecting the three-dimensional acceleration of the electronic cigarette and recording the track condition, for example, the electronic cigarette is knocked three times, a working parameter adjusting mode is entered, and then the electronic cigarette is shaken to realize adjustment, for example, the output power is reduced when the electronic cigarette is shaken two times on the left side, and the output power is increased when the electronic cigarette is shaken two times on the right side, so that the output power is adjusted. And if the user knocks five times in a short time continuously, the startup and shutdown operation is realized. Therefore, in this case, step S101 includes step S011-1, step S011-2, and step S011-3.
Step S011-1: and acquiring three-dimensional acceleration information of a three-dimensional acceleration sensor built in the electronic cigarette.
And step S011-2, if the three-dimensional acceleration information is larger than a preset acceleration threshold, the electronic cigarette acquires the working state information.
And step S011-3, if the three-dimensional acceleration information is not larger than a preset acceleration threshold, the electronic cigarette does not acquire the working state information.
It can be understood that the three-dimensional acceleration and the three-dimensional angular velocity of the electronic cigarette can be detected by the three-dimensional acceleration sensor, so as to detect whether the electronic cigarette generates effective displacement or adjusts instructions and the like. When the detected three-dimensional acceleration is greater than the preset acceleration threshold or the three-dimensional angular velocity is greater than the preset angular velocity threshold, namely the electronic cigarette can be detected to generate effective displacement through the three-dimensional acceleration sensor or the three-axis gyroscope sensor, the electronic cigarette is in a carried or in a use state, so that the current electronic cigarette can be judged to obtain working state information to indicate that the electronic cigarette works; otherwise, the electronic cigarette is judged not to acquire the working state information.
In the second case, step S101 includes step S012-1, step S012-2, and step S012-3.
Step S012-1: and acquiring current output information of the power supply of the electronic cigarette.
Step S012-2: and if the current output information is greater than a preset current output threshold value, the electronic cigarette acquires the working state information.
Step S012-3: if the current output information is not greater than the preset current output threshold, the electronic cigarette does not acquire the working state information.
In specific implementation, the current output information comprises output driving current, when the electronic cigarette is smoked, the power supply of the electronic cigarette can generate high current output at the smoking moment, so that when the driving current is detected and acquired to be larger than a preset current output threshold value stored in a memory of the electronic cigarette, the electronic cigarette is judged to acquire working state information, and the electronic cigarette is indicated to work; otherwise, the electronic cigarette is judged not to acquire the working state information.
In the third case, if the electronic cigarette adopts the airflow sensor to recognize the smoking state of the user and then the ignition is carried out. Such as with the gas flow sensor model number S6025-L02. The induction gas circuit of the airflow sensor is communicated with the suction gas circuit of the electronic cigarette, when a user sucks, airflow in the induction gas circuit is drawn out, so that negative pressure is generated, and when the airflow sensor monitors the negative pressure state, a trigger signal is generated. Step S101 includes step S031-1, step S031-2 and step S1013-3.
Step S1013-1: and acquiring the trigger information of the pneumatic sensor arranged in the electronic cigarette.
Step S1013-2: and if the trigger information of the pneumatic sensor exists, the electronic cigarette acquires the working state information.
Step S1013-3: and if the trigger information of the pneumatic sensor does not exist, the electronic cigarette does not acquire the working state information.
Optionally, the negative pressure value in the smoke tube of the electronic cigarette can be detected through the pneumatic sensor, and when the trigger information of the pneumatic sensor exists, the electronic cigarette represents that the user is smoking, so that the electronic cigarette is judged to acquire the working state information, the electronic cigarette is shown to be in the working state, and the electronic cigarette enters the working mode; otherwise, the electronic cigarette is judged not to acquire the working state information of the electronic cigarette, and the anti-lost mode is entered.
In the fourth case, step S101 includes step S014-1, step S014-2 and step S1014-3.
Step S1014-1: and acquiring the trigger information of the electronic cigarette key.
Step S1014-2: and if the key triggering information exists, the electronic cigarette acquires the working state information.
Step S1014-3: and if the key triggering information does not exist, the electronic cigarette does not acquire the working state information.
It is understood that the starting of the heating atomization of the electronic cigarette is not limited to the triggering by the negative pressure sensor in the above embodiments. For example, in other embodiments of the present invention, the triggering may also be performed by using a key, where the key may be a normal key, a virtual key, another trigger key, or a control sensor, and by detecting and acquiring the trigger information of the key, when it is detected that the electronic cigarette key is in a trigger state and generates key trigger information correspondingly, it is determined that the electronic cigarette acquires the working state information, and the electronic cigarette is in a working state, and enters a working mode; if the key triggering information is not detected and acquired, judging that the electronic cigarette does not acquire the working state information, and entering an anti-lost mode.
In the fifth case, step S101 includes step S015-1, step S015-2, and step S015-3.
Step S015-1: and acquiring power supply charging information of the power supply of the electronic cigarette.
Step S015-2: and if the power supply charging information exists, the electronic cigarette acquires the working state information.
Step S015-3: and if the power supply charging information does not exist, the electronic cigarette does not acquire the working state information.
Optionally, the charging detection circuit may detect whether the power supply of the electronic cigarette is in a charging state and obtain charging information of the power supply. The electronic cigarette charging method comprises the steps that power supply charging information comprises charging current, charging voltage, charging detection signals and the like, and when the power supply charging information exists (namely can be detected and obtained), the electronic cigarette is judged to obtain working state information, and a working mode is entered; and when the power supply charging information does not exist (namely, the power supply charging information is not detected and acquired), judging that the electronic cigarette does not acquire the working state information, and entering an anti-lost mode.
In specific implementation, the working state information comprises any one or any combination of multiple kinds of three-dimensional acceleration information, power output information, power charging information, key triggering information and pneumatic sensor triggering information of a built-in three-dimensional acceleration sensor; step S102: if the working state information of the electronic cigarette is acquired, the internal communication module is closed, and the working mode is specifically as follows: and if at least one of the three-dimensional acceleration information, the power output information, the power charging information, the key triggering information and the pneumatic sensor triggering information of the built-in three-dimensional acceleration sensor is acquired, closing the internal communication module and entering a working mode.
Step S103: and if the working state information of the electronic cigarette is not acquired, starting an internal communication module and entering an anti-loss mode.
Step S104: and if the electronic cigarette is in the loss prevention mode, establishing wireless communication connection with the mobile terminal through the wireless communication module.
Step S105: and acquiring an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information.
Step S106: and if the instruction signal carries alarm information, starting an internal alarm of the electronic cigarette to alarm.
According to the embodiment of the invention, the working state information of the electronic cigarette is obtained, and when the electronic cigarette is judged to be in the working state according to the working state information, the internal communication module of the electronic cigarette is turned off to disconnect the communication connection with the mobile terminal, and the electronic cigarette enters the working mode; when the electronic cigarette is judged to be in a non-working state (such as a standby state) according to the working state information, starting an internal communication module of the electronic cigarette so as to establish wireless communication connection between the electronic cigarette and the mobile terminal and enter an anti-lost mode; in the loss prevention mode, when an instruction signal from the mobile terminal is acquired and the instruction signal is identified to carry alarm information, an internal alarm of the electronic cigarette is started to alarm; therefore, the wireless Bluetooth communication is prevented from being started when the electronic cigarette is in a working state, the power consumption of the electronic cigarette during working is reduced, the cruising ability of the power supply in the electronic cigarette is improved, and the user experience is improved; simultaneously, can get into when the electron cigarette is in non-operating condition and prevent losing the mode, open electron cigarette and mobile terminal's two-way information interaction to receive the instruction signal who comes from mobile terminal, and start the alarm according to the alarm information that the direct current signal carried, audible alarm can be chooseed for use to the alarm, also can be for light alarm, perhaps vibrate the alarm etc. and can produce warning effect. In this embodiment, the combination of the audible and visual alarm is preferably adopted to achieve the purposes of quickly positioning the electronic cigarette and quickly finding the electronic cigarette to prevent the electronic cigarette from being lost.
It will be appreciated that in embodiments of the present invention, the electronic cigarette further comprises a timer, and the timer may collect time information. Therefore, in this embodiment of the present invention, the determining, in step S101, whether the electronic cigarette acquires the operating state information of the electronic cigarette specifically includes: and judging whether the electronic cigarette acquires the working state information of the electronic cigarette within a preset time period. For example, whether the electronic cigarette acquires the operating state information is determined every 5 seconds or every 10 seconds, so that the phenomenon that the power consumption is large when the time comparison is determined is avoided. It can be understood that the specific preset time period is reasonably selected by a user, and the value range is from more than 3 seconds to less than 30 seconds. Such as 7 seconds, 6 seconds, 3 seconds, etc., are within the scope of the present invention.
Referring to fig. 2, in one embodiment, in step S102: if the electronic cigarette acquires the working state information, the method further comprises the following steps:
step S107: and judging whether the working state information of the electronic cigarette is acquired again at intervals of first preset time.
Step S108: and if the working state information of the electronic cigarette is acquired again at the interval of the first preset time, closing the internal communication module and entering a working mode.
Step S109: and if the working state information of the electronic cigarette is not acquired at the interval of the first preset time, starting the internal communication module and entering an anti-loss mode.
In the specific implementation, in order to prevent the misjudgment of the working state from causing the wireless communication connection between the electronic cigarette and the mobile terminal to be started by mistake, after the electronic cigarette acquires the working state information, whether the working state information of the electronic cigarette is acquired is judged again at a first preset time interval, if the working state information of the electronic cigarette can still be detected and acquired after the first preset time interval, the electronic cigarette enters a working mode, an internal communication module of the electronic cigarette is closed, for example, a wireless Bluetooth communication module is used for disconnecting the wireless communication connection between the electronic cigarette and the mobile terminal, so that the purpose of reducing the power consumption of the electronic cigarette during working is achieved, the power consumption of a battery power supply of the electronic cigarette during working is further reduced, the battery power supply endurance of the electronic cigarette is improved, and the user experience is improved. If the working state information of the electronic cigarette is not acquired within the first preset time interval, the electronic cigarette enters an anti-lost mode, an internal communication module of the electronic cigarette is started, wireless communication connection between the electronic cigarette and the mobile terminal is established, so that an instruction signal from the mobile terminal is received and acquired, an internal alarm of the electronic cigarette is started to give an alarm according to alarm information carried in the instruction signal, the position of the electronic cigarette is rapidly located, and the electronic cigarette is rapidly found.
Referring to fig. 3, in one embodiment, step S105: the method comprises the following steps of obtaining an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information:
step S1010: and if the instruction information does not carry alarm information, the electronic cigarette detects and acquires the communication signal intensity with the mobile terminal.
Step S1011: and if the wireless communication connection is disconnected, starting an internal alarm of the electronic cigarette to alarm.
In specific implementation, the electronic cigarette end detects and acquires communication signal intensity of the mobile terminal, for example, wireless communication signal intensity, and because the wireless communication signal intensity is related to communication distance and opening and closing of the communication module, the electronic cigarette is judged to be disconnected from the wireless communication connection of the mobile terminal according to the fact that the acquired communication signal intensity is very weak or even not, so that an internal alarm of the electronic cigarette is started to alarm, and therefore the electronic cigarette is rapidly positioned and found, and further the electronic cigarette is prevented from being lost.
Referring to fig. 4, in one embodiment, step S105: the method comprises the following steps of obtaining an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information:
step S1012: and if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of the communication signal with the electronic cigarette.
Step S1013: and if the wireless communication connection is disconnected, the mobile terminal collects the current position information of the mobile terminal and stores the current position information into a preset electronic cigarette position database of the mobile terminal.
Here, in this embodiment, when wireless communication connection breaks down, mobile terminal gathers current mobile terminal's positional information, and will change positional information storage to mobile terminal's preset electron cigarette position database, therefore, when the user needs to seek the electron cigarette, can look up this positional information, and with this positional information leading-in to the map, with navigation to wireless communication connection break down position, send alarm information to the electron cigarette after establishing wireless communication connection with the electron cigarette again, send the police dispatch newspaper with the drive electron cigarette, thereby realize seeking the electron cigarette fast.
In the embodiment, please refer to fig. 5, step S1013: if the wireless communication connection is disconnected, the mobile terminal collects the current position information of the electronic cigarette and stores the current position information in the electronic cigarette position database of the mobile terminal, and the step further comprises the following steps:
step S10131: if the old version position information is stored in the preset electronic cigarette position database, the old version position information is replaced by the current position information, and therefore storage space is effectively saved.
The method comprises the steps that an internal communication module is in an open state when an electronic cigarette is in a loss prevention mode, wireless communication connection is established between the electronic cigarette and a mobile terminal, the mobile terminal detects and acquires communication signal intensity between the mobile terminal and the electronic cigarette, when the wireless communication connection between the mobile terminal and the electronic cigarette is judged to be disconnected according to the communication signal intensity, the mobile terminal collects current position information of the mobile terminal and stores the current position information in a preset electronic cigarette position database of the mobile terminal, and specifically, if the preset electronic cigarette position database does not store old version position information, the current position information is directly stored in the electronic cigarette position database; if the electronic cigarette position database stores old version position information, updating the old version position information into current position information for storage; so that the user can call and when the communication connection is disconnected again, the position information corresponding to the electronic cigarette, and the electronic cigarette can be quickly positioned and found.
Referring to fig. 6, in one embodiment, step S105: the method comprises the following steps of obtaining an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information:
step S1014: if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of the communication signal;
step S1015: if the wireless communication connection is disconnected, the mobile terminal collects communication signal intensity change information in a second preset time period and position information corresponding to the mobile terminal, and obtains the position information of the electronic cigarette according to the position information corresponding to the mobile terminal.
In specific implementation, the second preset time period may be a time period before the wireless communication connection is disconnected, for example, 5 seconds, 10 seconds, or 15 seconds, and the mobile terminal detects and acquires the intensity of the communication signal, and obtains change information of the intensity of the communication signal according to the acquired intensity of the communication signal, for example, a change trend that the intensity of the communication signal gradually becomes stronger or a change trend that the intensity of the communication signal gradually becomes weaker. And because the farther the mobile terminal is from the electronic cigarette, the smaller the communication signal intensity that can be obtained is, then the mobile terminal can calculate and obtain self position information according to the communication signal intensity, and calculate and obtain the position information of electronic cigarette according to the position information of mobile terminal and communication signal intensity change information, and store the position information of electronic cigarette to mobile terminal's preset electronic cigarette position database, so that the user can fix a position the electronic cigarette through mobile terminal fast, find the electronic cigarette fast, prevent that the electronic cigarette from losing.
Specifically, in the practical application process, not only in the above embodiment, but also in a manner of acquiring new location information to replace old location information. For example, in other embodiments of the present invention, when the storage space of the mobile terminal is large, the deletion may also be handled by the user.
Meanwhile, the user can input the remark information into each piece of position information, for example, when the mobile terminal is disconnected from the wireless communication of the electronic cigarette, the mobile terminal records a piece of current position information, stores the current position information into a preset electronic cigarette position database, and then can input the remark information into the position information. For example, when the user finds the electronic cigarette at a specific position such as a tea table, a sofa, a chair, a table, etc. through the position information, the specific position can be remarked to the position information. Therefore, when the mobile terminal acquires new mobile terminal position information, the mobile terminal can be matched with a plurality of old data information in a preset electronic cigarette position database to match the closest position information. And further acquiring remark information of the closest position information to prompt a user. The situation that the electronic cigarette is lost due to the fact that the user cannot reach the position disconnected at the previous time and cannot establish Bluetooth connection with the electronic cigarette after automatic shutdown protection is avoided.
A second aspect of the embodiments of the present invention provides a low-power loss prevention device for an electronic cigarette, including a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor implements the steps of the low-power loss prevention method when executing the computer program.
Fig. 7 is another schematic diagram of a low-power loss prevention device 20 of an electronic cigarette according to an embodiment of the present invention. As shown in fig. 7, the electronic cigarette low-power loss prevention device 20 of this embodiment includes: a processor 21, a memory 22 and a computer program 23 stored in the memory 22 and executable on the processor 21, such as a program of a low power consumption anti-loss method of an electronic cigarette. The processor 21 implements the steps in each of the embodiments of the low power consumption electronic cigarette anti-lost method described above, such as the steps S101 to S106 shown in fig. 1, when executing the computer program 23.
An electronic cigarette low power loss anti-lost device 20 may be an electronic cigarette drive controller or otherwise. The low-power loss prevention device 20 of the electronic cigarette may include, but is not limited to, a processor 21 and a memory 22. It will be understood by those skilled in the art that figure 7 is merely an example of an e-cigarette low power loss prevention device and does not constitute a limitation of an e-cigarette low power loss prevention device and may include more or fewer components than shown, or some components in combination, or different components, e.g., the associated application mining device may also include an input output device, a network access device, a bus, etc.
The Processor 21 may be a Central Processing Unit (CPU), other general purpose Processor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), an off-the-shelf Programmable Gate Array (FPGA) or other Programmable logic device, discrete Gate or transistor logic, discrete hardware components, etc. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
The memory 22 may be an internal storage unit of the low-power loss prevention device of the electronic cigarette, such as a hard disk or a memory of the low-power loss prevention device of the electronic cigarette. The memory 22 may also be an external storage device of the low power loss device of the electronic cigarette, such as a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) Card, a Flash Card (Flash Card), and the like, which are equipped on the low power loss device of the electronic cigarette. Further, the memory 22 may also include both an internal storage unit and an external storage device of the low-power loss prevention apparatus of the electronic cigarette. The memory 22 is used for storing the computer program and other programs and data required by the low power loss anti-loss device of the electronic cigarette. The memory 22 may also be used to temporarily store data that has been output or is to be output.
In the above embodiments, the descriptions of the respective embodiments have respective emphasis, and reference may be made to the related descriptions of other embodiments for parts that are not described or illustrated in a certain embodiment.
The invention is not to be considered as limited to the particular examples shown, but is to be accorded the widest scope consistent with the principles and novel features herein disclosed.

Claims (10)

1. A low-power consumption electronic cigarette anti-lost method is characterized by comprising the following steps:
judging whether the working state information of the electronic cigarette is acquired or not;
if the working state information of the electronic cigarette is acquired, closing the internal communication module and entering a working mode;
if the working state information of the electronic cigarette is not acquired, starting the internal communication module and entering an anti-loss mode;
if the electronic cigarette is in the anti-lost mode, establishing wireless communication connection with a mobile terminal, acquiring an instruction signal from the mobile terminal, and identifying whether the instruction signal carries alarm information or not;
and if the instruction signal carries alarm information, starting an internal alarm by the electronic cigarette to alarm.
2. The low-power consumption electronic cigarette anti-lost method according to claim 1, wherein the operating state information includes any one or any combination of three-dimensional acceleration information of a built-in three-dimensional acceleration sensor, power output information, power charging information, key triggering information and pneumatic sensor triggering information; if the working state information of the electronic cigarette is acquired, the internal communication module is closed, and the working mode is specifically as follows: and if at least one of the three-dimensional acceleration information, the power output information, the power charging information, the key triggering information and the pneumatic sensor triggering information of the built-in three-dimensional acceleration sensor is acquired, closing the internal communication module and entering a working mode.
3. The low-power consumption electronic cigarette anti-lost method according to claim 2, wherein the step of determining whether the electronic cigarette acquires the operating state information comprises the steps of:
acquiring three-dimensional acceleration information of a three-dimensional acceleration sensor built in the electronic cigarette; if the three-dimensional acceleration information is larger than a preset acceleration threshold, the electronic cigarette obtains working state information;
if the three-dimensional acceleration information is not larger than the preset acceleration threshold, the electronic cigarette does not acquire working state information;
or the like, or, alternatively,
acquiring current output information of a power supply of the electronic cigarette;
if the current output information is larger than a preset current output threshold value, the electronic cigarette acquires working state information;
if the current output information is not greater than the preset current output threshold, the electronic cigarette does not acquire working state information;
or the like, or, alternatively,
acquiring power supply charging information of the power supply of the electronic cigarette;
if the power supply charging information exists, the electronic cigarette acquires working state information;
if the power supply charging information does not exist, the electronic cigarette does not acquire the working state information;
or the like, or, alternatively,
acquiring trigger information of an electronic cigarette key;
if the key triggering information exists, the electronic cigarette acquires working state information;
if the key triggering information does not exist, the electronic cigarette does not acquire the working state information;
or the like, or, alternatively,
acquiring trigger information of a pneumatic sensor arranged in the electronic cigarette;
if the trigger information of the pneumatic sensor exists, the electronic cigarette acquires working state information;
and if the pneumatic sensor trigger information does not exist, the electronic cigarette does not acquire the working state information.
4. The low-power consumption electronic cigarette anti-lost method according to claim 1, wherein after the electronic cigarette acquires the operating state information, the method further comprises:
judging whether the working state information of the electronic cigarette is obtained again at intervals of first preset time;
if the working state information of the electronic cigarette is obtained again at intervals of first preset time, closing the internal communication module and entering a working mode;
and if the working state information of the electronic cigarette is not acquired at the interval of the first preset time, starting an internal communication module and entering an anti-loss mode.
5. The low-power consumption electronic cigarette anti-lost method according to claim 1, wherein the step of obtaining the instruction signal from the mobile terminal and identifying whether the instruction signal carries alarm information further comprises:
if the instruction information does not carry alarm information, the electronic cigarette detects and acquires the communication signal intensity with the mobile terminal;
and if the wireless communication connection is disconnected, starting an internal alarm of the electronic cigarette to alarm.
6. The low-power consumption electronic cigarette anti-lost method according to claim 1, wherein the step of obtaining the instruction signal from the mobile terminal and identifying whether the instruction signal carries alarm information further comprises:
if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of a communication signal with the electronic cigarette;
and if the wireless communication connection is disconnected, the mobile terminal collects the position information of the current mobile terminal and stores the position information into a preset electronic cigarette position database of the mobile terminal.
7. The method for preventing the electronic cigarette from being lost with low power consumption of claim 6, wherein if the wireless communication connection is disconnected, the step of collecting the position information of the current mobile terminal by the mobile terminal and storing the position information into the electronic cigarette position database of the mobile terminal further comprises the steps of:
and if the preset electronic cigarette position database stores old version position information, replacing the old version position information with the current position information.
8. The low-power consumption electronic cigarette anti-lost method according to claim 1, wherein the step of obtaining the instruction signal from the mobile terminal and identifying whether the instruction signal carries alarm information further comprises:
if the instruction information does not carry alarm information, the mobile terminal detects and acquires the intensity of the communication signal;
and if the wireless communication connection is disconnected, the mobile terminal collects communication signal intensity change information in a second preset time period and position information corresponding to the mobile terminal, and acquires the position information of the electronic cigarette according to the position information corresponding to the mobile terminal.
9. An electronic cigarette comprising a memory, a processor and a computer program stored in the memory and executable on the processor, characterized in that the processor implements the steps of the low power consumption electronic cigarette anti-loss method according to any one of claims 1 to 8 when executing the computer program.
10. A computer-readable storage medium, in which a computer program is stored, which, when being executed by a processor, carries out the steps of the low-power consumption electronic cigarette anti-loss method according to any one of claims 1 to 8.
CN201911351274.4A 2019-12-23 2019-12-23 Low-power-consumption electronic cigarette anti-loss method, computer-readable storage medium and electronic cigarette Pending CN111161516A (en)

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Application publication date: 20200515