Utility model content
Main purpose of the present utility model be to provide a kind of structure simple, can according to sleep quality situation, automatic temperature-regulator and the system for improving sleep quality of adjustment human body place environment temperature automatically.
For achieving the above object, the utility model provides a kind of automatic temperature-regulator for improving sleep quality, and described automatic temperature-regulator comprises quilt body, at least two temperature detecting module and an infrared control module,
At least one temperature detecting module is arranged at quilt body internal surface, for gathering the temperature of quilt body and body surface contact surface, and the temperature value of described quilt body and body surface contact surface is sent to described infrared control module;
At least one temperature detecting module is arranged at quilt body outer surface, for gathering the temperature of quilt body and external environment condition contact surface, and the temperature value of described quilt body and external environment condition contact surface is sent to described infrared control module;
Wirelessly set up communication between described temperature detecting module with described infrared control module to be connected, described infrared control module exports infrared control signal to air-conditioning, to regulate ambient temperature according to described quilt body and the temperature of body surface contact surface and the temperature of described quilt body and external environment condition contact surface.
Preferably, described temperature detecting module comprises temperature sensor, wireless transmission unit, signal processing unit and the first power supply unit:
Described temperature sensor, described wireless transmission unit are electrically connected with described signal processing unit, and described temperature sensor, described wireless transmission unit, described signal processing unit are electrically connected with described first power supply unit;
Environment temperature for gathering environment temperature, and is converted into the signal of telecommunication that described signal processing unit can process by described temperature sensor;
Described signal processing unit is for receiving the described signal of telecommunication and being translated into temperature value;
Wireless transmission unit is for receiving described temperature value and described temperature value being sent to described infrared control module;
Described first power supply unit is used for powering for described temperature sensor, described wireless transmission unit and described signal processing unit.
Preferably, described infrared control module comprises radio receiving unit, infrared emission unit, infrared control unit and the second power supply unit:
Described radio receiving unit, described infrared emission unit are electrically connected with described infrared control unit, and described radio receiving unit, described infrared emission unit and described infrared control unit are electrically connected with described second power supply unit;
The temperature value that described radio receiving unit sends for receiving described temperature detecting module, and be sent to described infrared control unit;
The temperature value that described infrared control unit sends for receiving described radio receiving unit, when quilt body and the temperature of body surface contact surface and/or the temperature of described quilt body and external environment condition contact surface be not in preset range, generate infrared control signal, and be sent to described infrared emission unit;
Described infrared emission unit for launching described infrared control signal to air-conditioning, to regulate ambient temperature.
Preferably, described infrared control module also comprises alarm unit, and described alarm unit is electrically connected with described infrared control unit and the second power supply unit;
Described alarm unit is used for when described quilt body and the temperature of body surface contact surface and/or the temperature of described quilt body and external environment condition contact surface be not in preset range, output alarm information.
Preferably, described quilt body internal surface arranges three temperature detecting module, lays respectively at two ends and the middle part of quilt body internal surface and human contact, gathers the shell temperature of human body foot when sleeping with normal posture, shoulder and belly respectively.
In addition, for achieving the above object, the utility model also provides a kind of automatic temperature control system for improving sleep quality, comprises air-conditioning, and for improving the automatic temperature-regulator of sleep quality, described air-conditioning is used for regulating ambient temperature according to the control signal of infrared control module.
The utility model adopts technique scheme, the technique effect brought is: by gathering the temperature of quilt body and body surface contact surface at quilt body internal surface set temperature detection module, and the temperature value of described quilt body and body surface contact surface is sent to infrared control module, the temperature of quilt body and external environment condition contact surface is gathered at quilt body outer surface set temperature detection module, and the temperature value of described quilt body and external environment condition contact surface is sent to infrared control module, infrared control module exports infrared control signal to air-conditioning according to described quilt body and the temperature of body surface contact surface and the temperature of described quilt body and external environment condition contact surface, to regulate ambient temperature.Structure is simple, can according to sleep quality situation, adjustment human body place environment temperature automatically.
Detailed description of the invention
Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
The utility model provides a kind of automatic temperature-regulator for improving sleep quality.
With reference to the system architecture schematic diagram that Fig. 1, Fig. 1 are the utility model automatic temperature-regulator one preferred embodiment.
In one embodiment, as shown in Figure 1, described automatic temperature-regulator comprises quilt body 10, two temperature detecting module 11 and an infrared control module 12, described quilt body 10 is cotton-wadded quilt conventional in daily life, described temperature detecting module 11 and described infrared control module 12 are arranged on described quilt body 10, the method arranged can adopt the connected mode between common cloth, first described temperature detecting module 11 and described infrared control module 12 are separately fixed on the object that can be connected with cloth, such as can use VELCRO or velcro, be fixed in again on quilt body.Described healthy quilt 1 can use quilt cover in use, is rubbed owing to using for a long time to prevent described temperature detecting module 11 and described infrared control module 12.
First temperature detecting module is arranged at quilt body 10 inner surface, for gathering the temperature of quilt body and body surface contact surface, and the temperature value of described quilt body and body surface contact surface is sent to described infrared control module 12;
Second temperature detecting module is arranged at quilt body 10 outer surface, for gathering the temperature of quilt body and external environment condition contact surface, and the temperature value of described quilt body and external environment condition contact surface is sent to described infrared control module 12;
Wirelessly set up communication between described temperature detecting module 11 with described infrared control module 12 to be connected, described infrared control module 11 exports infrared control signal to air-conditioning, to regulate ambient temperature according to described quilt body and the temperature of body surface contact surface and the temperature of described quilt body and external environment condition contact surface.
The application scenarios of the utility model embodiment automatic temperature-regulator is as follows: people is when sleeping, if ambient temperature continues at 27 DEG C, just start in bed, the temperature of quilt body and body surface contact surface will maintain between 32 DEG C ~ 34 DEG C, people can feel very comfortable, and sleep just can not kick quilt son, people in sleeping process along with the rising of human body temperature and the heat-preserving function of quilt, the temperature of quilt body and body surface contact surface will increase, when exceeding the unacceptable scope of human body, quilt can be kicked off, now the temperature of quilt body and body surface contact surface will decline thereupon, when the first temperature detecting module 110 detect the temperature of quilt body and body surface contact surface drop to such as 30 DEG C time, think that people has kicked quilt off, in order to guarantor can not catch a cold when kicking quilt off, infrared control module 12 is according to the temperature (27 DEG C) of current described quilt body and external environment condition contact surface, export infrared control signal to described air-conditioning, described infrared control signal can be reduce the infrared signal of described air-conditioner temperature (such as reducing temperature to 26 DEG C), it can also be the infrared signal (such as wind speed being tuned up one-level) etc. adjusting described air conditioner wind speed, to regulate ambient temperature.When the temperature of described quilt body and external environment condition contact surface reduces (being such as reduced to 26 DEG C), people knows from experience and feels cold, consciously can cover quilt, can not therefore catch a cold.Circulation like this, realizes human body automatic adjustment to environment temperature under different sleep state.
The utility model embodiment is by gathering the temperature of quilt body and body surface contact surface at quilt body internal surface set temperature detection module, and the temperature value of described quilt body and body surface contact surface is sent to infrared control module, the temperature of quilt body and external environment condition contact surface is gathered at quilt body outer surface set temperature detection module, and the temperature value of described quilt body and external environment condition contact surface is sent to infrared control module, infrared control module exports infrared control signal to air-conditioning according to described quilt body and the temperature of body surface contact surface and the temperature of described quilt body and external environment condition contact surface, to regulate ambient temperature.Structure is simple, can according to sleep quality situation, adjustment human body place environment temperature automatically.
With reference to the structural representation that Fig. 2, Fig. 2 are the utility model temperature detecting module one embodiment.
In one embodiment, as shown in Figure 2, described temperature detecting module 11 comprises temperature sensor 110, wireless transmission unit 111, signal processing unit 112 and the first power supply unit 113:
Described temperature sensor 110, described wireless transmission unit 111 are electrically connected with described signal processing unit 112, and described temperature sensor 110, described wireless transmission unit 111, described signal processing unit 112 are electrically connected with described first power supply unit 113;
Environment temperature for gathering environment temperature, and is converted into the signal of telecommunication that described signal processing unit 112 can process by described temperature sensor 110; The temperature sensor measurement temperature reliably such as thermocouple, thermistor, RTD or chip temperature can be adopted in the present embodiment.
Described signal processing unit 112 is for receiving the described signal of telecommunication and being translated into temperature value; Temperature sensor 110 exports as the faint signal of telecommunication, needs to be translated into actual temperature value through described signal processing unit 112, belongs to prior art, be not repeated herein for signal processing.Described transform electrical signals is be sent to wireless transmission unit 111 after temperature value by described signal processing unit 112.
Composition graphs 1, described wireless transmission unit 111 is for receiving described temperature value and described temperature value being sent to described infrared control module 12; In the present embodiment, described wireless transmission unit 111 can for adopting ZigBee technology, and ZigBee technology is the wireless communication technology of a kind of short distance, low-power consumption.Be characterized in closely, low complex degree, self-organizing, low-power consumption, low data rate.Adopt ZigBee technology temperature detecting module 11 and infrared control module 12 can be formed a ZigBee-network in the present embodiment, the temperature value collected wirelessly is sent to infrared control module 12.
Described first power supply unit 113 is for powering for described temperature sensor 110, described wireless transmission unit 111 and described signal processing unit 112.Described first power supply unit 113 is common power-supplying circuit, belongs to prior art, is not repeated herein.
With reference to the structural representation that Fig. 3, Fig. 3 are the utility model infrared control module one embodiment.
In one embodiment, described infrared control module 12 comprises radio receiving unit 120, infrared emission unit 121, infrared control unit 122 and the second power supply unit 123:
Described radio receiving unit 120, described infrared emission unit 121 are electrically connected with described infrared control unit 122, and described radio receiving unit 120, described infrared emission unit 121 and described infrared control unit 122 are electrically connected with described second power supply unit 123;
Composition graphs 1, the temperature value that described radio receiving unit 120 sends for receiving described temperature detecting module, and be sent to described infrared control unit 122; Described radio receiving unit 120 also adopts ZigBee technology, receives the temperature value that temperature detecting module 11 sends, and described temperature value is sent to described infrared control unit 122.
The temperature value that described infrared control unit 122 sends for receiving described radio receiving unit 120, when quilt body and the temperature of body surface contact surface and/or the temperature of described quilt body and external environment condition contact surface be not in preset range, generate infrared control signal, and be sent to described infrared emission unit 121;
Described infrared emission unit 121 for launching described infrared control signal to described air-conditioning, to regulate ambient temperature.
Particularly, when the temperature of quilt body and body surface contact surface is more than a preset value (such as 35 DEG C), described infrared control unit 122 generates infrared control signal, described infrared control signal is the infrared signal (such as reducing temperature to 26 DEG C) of the described air-conditioner temperature of a reduction, or adjust the infrared signal (such as wind speed being tuned up one-level) of described air conditioner wind speed, and be sent to described infrared emission unit 121, described infrared emission unit 121 launches described infrared signal to described air-conditioning, for adjusting ambient temperature; When the temperature of quilt body and external environment condition contact surface is less than a preset value (such as 27 DEG C), described infrared control unit 122 generates infrared control signal, described infrared control signal is the infrared signal (such as improving temperature to 27 DEG C) of the described air-conditioner temperature of a raising, or adjust the infrared signal (such as turning wind speed down one-level) of described air conditioner wind speed, and be sent to described infrared emission unit 121, described infrared emission unit 121 launches described infrared signal to described air-conditioning, for adjusting ambient temperature.
With reference to the structural representation that Fig. 4, Fig. 4 are another embodiment of the utility model infrared control module.
In one embodiment, based on embodiment illustrated in fig. 3, described infrared control module 12 also comprises alarm unit 124, and described alarm unit 124 is electrically connected with described infrared control unit 122 and the second power supply unit 123;
Described alarm unit 124 for when the temperature of described quilt body and body surface contact surface and/or the temperature of described quilt body and external environment condition contact surface be not in preset range, output alarm information.Particularly, when the temperature that the described infrared control unit 122 in described infrared control module 12 judges the temperature of described quilt body and body surface contact surface and/or described quilt body and external environment condition contact surface is not in preset range (temperature of such as quilt body and body surface contact surface higher than the temperature of 35 DEG C or quilt body and external environment condition contact surface lower than 27 DEG C), described alarm unit 124 output alarm information, reminds sleeper to wake up and readjusts sleeping position.Described type of alarm can be audible alarm, also can be by arranging a mechanical device, described infrared control unit 122 controls mechanical device and vibrates under certain frequency, sleeping position is adjusted to remind sleeper, this kind of mode can wake sleeper up, after sleeper adjusts sleeping position, described infrared control unit 122 controls described mechanical device and stops vibration.
In a preferred embodiment, described quilt body internal surface arranges three temperature detecting module as shown in Fig. 2 embodiment, lay respectively at two ends and the middle part of quilt body internal surface and human contact, gather the shell temperature of human body foot when sleeping with normal posture, shoulder and belly respectively.The shell temperature value of foot when sleeping with normal posture by gathering human body respectively, shoulder or belly, described infrared control module can export different infrared control signal to described air-conditioning according to the temperature value of sleeper's different parts, more accurate adjustment ambient temperature, avoids because sleeper foot and belly are suffered from cold and caught a cold.Such as when the foot's shoulder collected or abdomen temperature value be not in preset range, described infrared control unit generates infrared control signal, it is the infrared signal (such as improving temperature to 28 DEG C) of the described air-conditioner temperature of a raising, or adjust the infrared signal (being such as adjusted to by wind speed minimum) of described air conditioner wind speed, and be sent to described infrared emission unit, described infrared emission unit launches described infrared signal to described air-conditioning, adjustment ambient temperature.
The utility model adopts technique scheme, the technique effect brought is: by gathering the temperature of quilt body and body surface contact surface at quilt body internal surface set temperature detection module, and the temperature value of described quilt body and body surface contact surface is sent to infrared control module, the temperature of quilt body and external environment condition contact surface is gathered at quilt body outer surface set temperature detection module, and the temperature value of described quilt body and external environment condition contact surface is sent to infrared control module, infrared control module exports infrared control signal to air-conditioning according to described quilt body and the temperature of body surface contact surface and the temperature of described quilt body and external environment condition contact surface, to regulate ambient temperature.Structure is simple, can according to sleep quality situation, adjustment human body place environment temperature automatically.
The utility model also provides a kind of automatic temperature control system for improving sleep quality.
With reference to the system architecture schematic diagram that Fig. 5, Fig. 5 are the utility model automatic temperature control system one preferred embodiment.
In one embodiment, as shown in Figure 5, automatic temperature control system for improving sleep quality comprises automatic temperature-regulator 1 and air-conditioning 2, and automatic temperature-regulator 1 can refer to whole technical scheme in the whole embodiment of above-mentioned Fig. 1 to Fig. 4 and technique effect, does not repeat at this.In the present embodiment, air-conditioning 2 regulates ambient temperature for the control signal according to infrared control module 12.Infrared control module 12 launches the infrared signal (such as improving temperature to 27 DEG C) for improving air-conditioner temperature, or the infrared signal (such as turning wind speed down one-level) of adjustment air conditioner wind speed, air-conditioning 2 is according to above-mentioned infrared control signal adjustment temperature or wind speed, thus adjustment ambient temperature.
These are only preferred embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model description and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.