CN208424610U - Individual soldier's emergency management and rescue intelligent wearable device - Google Patents
Individual soldier's emergency management and rescue intelligent wearable device Download PDFInfo
- Publication number
- CN208424610U CN208424610U CN201820931225.2U CN201820931225U CN208424610U CN 208424610 U CN208424610 U CN 208424610U CN 201820931225 U CN201820931225 U CN 201820931225U CN 208424610 U CN208424610 U CN 208424610U
- Authority
- CN
- China
- Prior art keywords
- module
- mesh
- bluetooth
- signal
- rescue
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Alarm Systems (AREA)
Abstract
The utility model discloses a kind of individual soldier's emergency management and rescue intelligent wearable devices, including indoor positioning module, Intelligent bracelet, rescue beacon, the audio-video helmet, MESH host, several MESH repeaters, MESH receiving host and emergency command case;Indoor positioning module sends signal to rescue beacon by the first bluetooth module, Intelligent bracelet sends signal to rescue beacon by the second bluetooth module, rescue beacon receives the signal that indoor positioning module and Intelligent bracelet are sent by bluetooth main control module, sends signal to emergency command case by radio-frequency module or the first wireless communication module;The audio-video helmet is connect with MESH host, MESH host sends the signal to MESH receiving host by MESH repeater, or base station is sent the signal to by the 2nd 4G/5G module, the server of emergency command case receives the signal that rescue beacon and MESH host are sent, and the signal received is sent to command centre by third wireless communication module.
Description
Technical field
The utility model relates to individual soldier's communication, intelligent wearable device, emergency management and rescue fields, and in particular to a kind of individual soldier's emergency
Rescue intelligent wearable device.
Background technique
With the sustained and rapid development of China's economy and the continuous quickening of process of industrialization, accident risk increases therewith, this
It not only brings about great losses to national economy, can also cause bad social influence or even threatens social stability.Therefore, accident is reduced
People life property safety is saved in loss, implements the important topic that scientific and effective emergency management and rescue have become today's society, and
In rescue operations, the guarantee and supporting role ever more important of Advanced Equipment.
And the equipment presence of emergency management and rescue security protection at present has a single function, protective capacities is low, traffic guidance is unsmooth and effect
A kind of individual soldier's emergency management and rescue intelligent wearable device of compatible communication how is therefore designed with the deficiency of comfort difference,
In conjunction with multiple technologies such as MESH, 4G/5G, lora, multi-functional, highly reliable, wide protection, lightweight emergency rescuing protection system are realized
System, is still technical problem to be solved.
Utility model content
In order to overcome the above-mentioned deficiencies of the prior art, the utility model provides a kind of intelligent dress of individual soldier's emergency management and rescue and sets
It is standby, it can accurately obtain indoor location, motion profile, athletic posture, heart rate, blood pressure and the local environment image of rescue personnel
Etc. information, realize it is multi-functional, highly reliable, wide protection, lightweight emergency rescuing protection.
The technical scheme adopted by the utility model is
A kind of individual soldier's emergency management and rescue intelligent wearable device, including indoor positioning module, Intelligent bracelet, rescue beacon, audio-video
The helmet, MESH host, several MESH repeaters, MESH receiving host and emergency command case;
The indoor positioning module includes the first bluetooth module and the first data acquisition module, first data acquisition module
The output end of block is connect with the first bluetooth module, and first bluetooth module sends the first Bluetooth signal to rescue beacon;
The Intelligent bracelet includes that bracelet ontology and setting are acquired in intrinsic second bluetooth module of bracelet, the second data
The output end of module, second data acquisition module is connect with the second bluetooth module, and second bluetooth module is to rescue beacon
Send the second Bluetooth signal;
The rescue beacon includes bluetooth main control module, first serial module, radio-frequency module, second serial module, the first nothing
Line communication module, the bluetooth main control module receive the first Bluetooth signal and the second Bluetooth signal, the bluetooth main control module
Output end is connected by the input terminal of first serial module and radio-frequency module, and the output end of the radio-frequency module passes through second serial
Module is connect with the first wireless communication module, and the radio-frequency module or the first wireless communication module send first to emergency command case
Wireless signal;
The audio-video helmet includes that protective helmet ontology and the miniature webcam being nested on protective helmet ontology, bone pass
Guide lug machine and the first microphone, the miniature webcam, bone conduction earphone and the first microphone are connect with MESH host respectively,
MESH host sends the signal to MESH receiving host by MESH repeater, and MESH receiving host transmits the signal received
To emergency command case, while MESH host transmits a signal to emergency command case by the second wireless communication module;
The emergency command case includes server and third wireless communication module, the server and third radio communication mold
Block connection receives the first wireless signal that rescue beacon is sent and the signal that MESH host is sent, and passes through third radio communication mold
The signal received is sent to command centre by block.
Further, the indoor positioning module, Intelligent bracelet, rescue beacon, MESH host, MESH repeater, MESH connect
It receives host and emergency command case respectively further comprises power module, the power module, for the electric energy needed for providing to each module.
Further, first data acquisition module includes magnetometer, inertial sensor and gyro sensor, described
The output end of magnetometer, inertial sensor and gyro sensor is connect with the first bluetooth module respectively;Second data are adopted
Collect module and use PPG heart rate sensor, the second data acquisition module connects LED display unit.
Further, the rescue beacon further includes the sound and light alarm module connecting with bluetooth main control module.
Further, the bluetooth main control module uses HDFI/SI-LYZ type bluetooth master control borad, the bluetooth master control borad packet
Include processor and memory connected to the processor, bluetooth receiving module;The radio-frequency module uses HDFI/SI-lora type
Lora rf board, the lora rf board include the noise reduction module being connected and on-off model input/output module.
Further, the MESH host include the first Mesh module, audio/video encoding/decoding module, third serial port module,
Second wireless communication module and interchanger, the input terminal and miniature webcam, bone conduction earphone of the audio/video encoding/decoding module
It is connected with the first microphone, the output end of the audio/video encoding/decoding module is connect with the input terminal of the first Mesh module, described
The output end of first Mesh module is connect by third serial port module with the second wireless communication module, and the first Mesh module is also
It is connect with interchanger, the first Mesh module sends signal to MESH repeater, and second wireless communication module is to emergency
Case is commanded to send signal.
Further, the MESH repeater includes wireless receiving module, wireless transmitter module and microprocessor, described micro-
The input terminal of processor is connect with wireless receiving module, receives the signal that MESH host is sent;The output end of the microprocessor
It is connect with wireless transmitter module, signal is sent to MESH receiving host by wireless transmitter module;
The MESH receiving host includes the 2nd Mesh module;The 2nd Mesh module receives what MESH repeater was sent
Signal, and it is transmitted to the server of emergency command case.
Further, the emergency command case further include the display being connect with server, memory, second microphone and
Earphone.
Further, first wireless communication module, the second wireless communication module and third wireless communication module difference
Using 4G or 5G module.
Further, first bluetooth module, the second bluetooth module, bluetooth main control module, radio-frequency module, first wireless
Communication module, the first Mesh module, the second wireless communication module, the 2nd Mesh module are connected separately with Anneta module.
Compared with prior art, the utility model has the beneficial effects that
(1) the utility model adopts security protection product, communication products, intelligence wearing product utilization network effective integration
With the communications such as 4G/5G the whole network is logical, lora communication, Bluetooth communication, 900MHZ MESH communication, the multi-functional, Gao Ke of realization
It leans on, wide protection, lightweight emergency rescuing protection;
(2) the utility model can accurately obtain the information such as position, motion profile, the athletic posture of rescue personnel and institute
Locate the information such as ambient image, it can be achieved that rescue site visual scheduling and centralized control, realize wireless video monitoring passback and
Voice bidirectional interaction, the vital sign of real-time monitoring rescue personnel, and early warning is carried out to rescue personnel.
Detailed description of the invention
The accompanying drawings constituting a part of this application is used to provide further understanding of the present application, and the application's shows
Meaning property embodiment and its explanation are not constituted an undue limitation on the present application for explaining the application.
Fig. 1 is individual soldier's emergency management and rescue intelligence wear structure block diagram;
Wherein, 1, indoor positioning module, the 1.1, first power module, 1.2, first antenna module, the 1.3, first data are adopted
Collection module, the 1.4, first bluetooth module, 2, Intelligent bracelet, the 2.1, second bluetooth module, the 2.2, second data acquisition unit, 2.3,
Second power supply module, 2.4, LED display unit, the 2.5, second Anneta module, 3, rescue beacon, 3.1, bluetooth master control borad, 3.2,
Lora rf board, 3.3, third antenna module, 3.4, third power module, the 3.5, the first 4G/5G module, 3.6, first serial mould
Block, 3.7, second serial module, 4, the audio-video helmet, 4.1, protective helmet, 4.2, miniature webcam, 4.3, bone conduction earphone,
4.4, the first microphone, 5, MESH host, the 5.1, the first Mesh module, 5.2, audio/video encoding/decoding module, 5.3, third serial ports
Module, the 5.4, the 2nd 4G/5G module, 5.5, interchanger, the 5.6, the 4th power module, the 5.7, the 4th Anneta module, 6, in MESH
After device, the 6.1, the 5th power module, 6.2, wireless receiving module, 6.3, wireless transmitter module, 6.4, microprocessor, 7, MESH connects
Receive host, the 7.1, the 6th power module, the 7.2, the 2nd Mesh module, the 7.3, the 5th Anneta module, 8, emergency command case, 8.1 clothes
Business device, 8.2, display, 8.3, memory, 8.4, second microphone, 8.5, earphone, the 8.6, the 3rd 4G/5G module, 9, Zhi Huizhong
The heart.
Specific embodiment
It is noted that following detailed description is all illustrative, it is intended to provide further instruction to the application.Unless another
It indicates, all technical and scientific terms used herein has usual with the application person of an ordinary skill in the technical field
The identical meanings of understanding.
It should be noted that term used herein above is merely to describe specific embodiment, and be not intended to restricted root
According to the illustrative embodiments of the application.As used herein, unless the context clearly indicates otherwise, otherwise singular
Also it is intended to include plural form, additionally, it should be understood that, when in the present specification using term "comprising" and/or " packet
Include " when, indicate existing characteristics, step, operation, device, component and/or their combination.
As shown in Figure 1, present embodiments providing a kind of individual soldier's emergency management and rescue intelligent wearable device, which includes indoor fixed
Position module 1, Intelligent bracelet 2, rescue beacon 3, the audio-video helmet 4, MESH host 5, several MESH repeaters 6, MESH receive master
Machine 7, emergency command case 8 and command centre 9, the indoor positioning module 1 are embedded on the insole of rescue personnel, are rescued for acquiring
The indoor three-dimensional motion information of personnel is helped, the indoor positioning module 1 is sent to rescue beacon 3 for data are acquired by bluetooth;Institute
Intelligent bracelet 2, rescue beacon 3, the audio-video helmet 4, MESH host 5 is stated to be both needed to be worn on rescue personnel;The Intelligent bracelet 2
For the vital sign state of real-time monitoring rescue personnel, the Intelligent bracelet 2 sends data to rescue beacon 3 by bluetooth;
The rescue site data that the rescue beacon receives indoor positioning module 1, Intelligent bracelet 2 is transmitted, and it is wirelessly transmitted to emergency command
Case 8;The audio-video helmet 4 is transmitted to MESH host 5 by wired mode for acquiring rescue site image information;
MESH host 5 is connected by MESH network with MESH repeater 6, is completed MESH signal by MESH repeater 6 and is jumped, by signal
It is transmitted to MESH receiving host 7;The MESH receiving host 7 is connect with emergency command case 8, is referred to for transmitting a signal to emergency
Wave case 8;The emergency command case 8 is by wirelessly transmitting a signal to command centre 9.
Above-mentioned indoor positioning module 1 includes the first power module 1.1, first antenna module 1.2, the first data acquisition module
Block 1.3, the first bluetooth module 1.4;First power module described in first power module respectively with the first bluetooth module 1.4,
First antenna module 1.2 and the connection of the first data acquisition module 1.3, for the first bluetooth module 1.4, first antenna module
1.2 and first data acquisition module 1.3 required power supply is provided;First data acquisition unit 1.3 includes magnetometer, inertia biography
Sensor, gyro sensor;The magnetometer is used to acquire the directional information of rescue personnel, is sent to the first bluetooth module 1.4;
The inertial sensor is used to acquire the displacement signal and altitude signal of rescue personnel, the gyro sensor acquisition rescue people
The direction signal and attitude signal of member;First data acquisition unit 1.3 is connect with the first bluetooth module 1.4, passes through first
Bluetooth module sends signal to rescue beacon, sends data to rescue beacon by bluetooth;First bluetooth module 1.4 is connected with
The high-frequency current energy efficient of transmitting terminal is converted into space for emitting or receiving electromagnetic wave by first antenna module 1.2
Electromagnetic energy.
Above-mentioned Intelligent bracelet 2 includes bracelet ontology and setting in the intrinsic number of second bluetooth module 2.1, second of bracelet
According to acquisition module 2.2, second power supply module 2.3, LED display module 2.4 and the second Anneta module 2.5;The second source mould
Block 2.3 and the second bluetooth module 2.1, the second data acquisition unit 2.2, LED display module 2.4 and the second Anneta module 2.5 connect
It connects, for the second bluetooth module 2.1, the second data acquisition unit 2.2, LED display module 2.4 and the second Anneta module 2.5
Power supply needed for providing;Second data acquisition module 2.2 uses PPG heart rate sensor, for acquire rescue personnel heart rate,
The data such as pressure value;Second data acquisition module 2.1 is connect with the second bluetooth module 2.3, passes through the second bluetooth module 2.3
Signal is sent to rescue beacon, rescue beacon is sent data to by bluetooth;The LED display module 2.4 and the second data acquire
Module 2.2 connects, for showing the data such as heart rate, pressure value.Second bluetooth module 2.3 is connected with the second Anneta module
2.5, for emitting or receiving electromagnetic wave, the high-frequency current energy efficient of transmitting terminal is converted into the electromagnetic energy in space.
In the present embodiment, the bracelet ontology uses existing Bracelet structure, is not repeating in this application.
Above-mentioned rescue beacon 3 includes bluetooth master control borad 3.1, lora rf board 3.2, third antenna module 3.3, third power supply
Module 3.4, the first 4G/5G module 3.5, first serial module 3.6, second serial module 3.7, the third power module 3.4
Respectively with bluetooth master control borad 3.1, lora rf board 3.2, third antenna module 3.3, the first 4G/5G module 3.5, first serial mould
Block 3.6, second serial module 3.7 connect, for bluetooth master control borad 3.1, lora rf board 3.2, third antenna module 3.3,
First 4G/5G module 3.5, first serial module 3.6, second serial module 3.7 provide required power supply;The bluetooth master control borad
3.1 are connect by first serial module 3.6 with lora rf board 3.2, and the lora rf board 3.2 passes through second serial module
3.7 connect with the first 4G/5G module 3.5, and the lora rf board or the first 4G/5G module send first to emergency command case 8
The data received are transmitted to emergency command case 8 by lora radio frequency or the first 4G/5G module by wireless signal, rescue beacon 3;Institute
State bluetooth master control borad 3.1, lora rf board 3.2, the first 4G/5G module 3.5 connection be connected separately with third antenna module 3.3,
Conversion for high-frequency current energy and spatial electromagnetic energy.
In the present embodiment, the bluetooth master control borad of the rescue beacon also passes through the device for pressure measurement on bluetooth and gas cylinder
Wireless telecommunications system connection, receives storage pressure value.The rescue beacon further includes the sound-light alarm mould connecting with bluetooth master control borad
Block, for carrying out early warning to rescue personnel, which uses existing combined aural and visual alarm.
In the present embodiment, the bluetooth master control borad 3.1 uses HDFI/SI-LYZ type bluetooth master control borad, the bluetooth master control
Plate includes 8KB processor, 8KB memory, 32KB flash memory, 3 road URAT, 4 road I2C, 2 road SPI and bluetooth 4.0;Lora rf board
3.2 use HDFI/SI-lora type lora rf boards, lora rf board work in 433M ISM band, comprising noise reduction module,
Crystal oscillating circuit, on-off model input/output module and data bits control etc..
The above-mentioned audio-video helmet 4 includes protective helmet 4.1, miniature webcam 4.2, bone conduction earphone 4.3 and the first wheat
Gram wind 4.4;The miniature webcam 4.2, bone conduction earphone 4.3 and the first microphone 4.3 are nested on the protective helmet,
The miniature webcam 4.2 is used for the video data of real-time collection site, and first microphone 4.4 is used for real-time collection site
Audio data, the bone conduction earphone 4.3 be used for real-time acquisition instruction.
In the present embodiment, the protective helmet uses prior art construction, is not repeating in the present embodiment.
Above-mentioned MESH host 5 includes the first Mesh module 5.1 of 900MHZ, audio/video encoding/decoding module 5.2, third serial ports
Module 5.3, the 2nd 4G/5G module 5.4, interchanger 5.5, the 4th power module 5.6 and the 4th Anneta module 5.7, the described 4th
Power module 5.6 respectively with the first Mesh module 5.1, audio/video encoding/decoding module 5.2, third serial port module 5.3, the 2nd 4G/
5G module 5.4, interchanger 5.5 and the 4th Anneta module connection 5.6, for the first Mesh module 5.1, audio/video encoding/decoding list
Member 5.2, third serial port module 5.3, the 2nd 4G/5G module 5.4, interchanger 5.5 and the 4th Anneta module 5.6 provide required electricity
Source;The input terminal of the audio/video encoding/decoding module 5.2 respectively with miniature webcam 4.2, bone conduction earphone 4.3 and the first Mike
Wind 4.4 connects, and receives the data of miniature webcam 4.2, bone conduction earphone 4.3 and the transmission of the first microphone 4.4, and is encoded
And decoding;The output end of the audio/video encoding/decoding module 5.2 is connect with the first Mesh module 5.1, the first Mesh module
It being connect by third serial port module 5.3 with the 2nd 4G/5G module 5.4, the first Mesh module 5.1 is also connect with interchanger,
Signal is sent to MESH repeater by the first Mesh module, or is sent by the 2nd 4G/5G module 5.4 to emergency command case 8
Signal;The first Mesh module 5.1, the 2nd 4G/5G module 5.4 are connect with the 4th Anneta module 5.7 respectively, for increasing by the
One Mesh module and the 2nd 4G/5G module radiant power and anti-interference ability.
Above-mentioned MESH repeater 6 includes the 5th power module 6.1, wireless receiving module 6.2, wireless transmitter module 6.3
With microprocessor 6.4, the 5th power module 6.1 respectively with wireless receiving module 6.2, wireless transmitter module 6.3 and Wei Chu
Device 6.4 is managed to connect, it is required for being provided for the connection of wireless receiving module 6.2, wireless transmitter module 6.3 and microprocessor 6.4
Power supply;The input terminal of the microprocessor is connect with wireless receiving module 6.2, receives the signal that MESH host is sent, described micro-
The output end of processor 6.4 is connect with wireless transmitter module 6.3, is sent by wireless transmitter module 6.3 to MESH receiving host 7
Signal.
Above-mentioned MESH receiving host 7 includes the 6th power module 7.1, the 2nd Mesh module 7.2 of 900MHZ, the 5th antenna
Module 7.3, the 6th power module 7.1 are connect with the 2nd Mesh module 7.2, the 5th Anneta module 7.3 respectively, for the
Two Mesh modules 7.2, the 5th Anneta module 7.3 provide required power supply, and the 2nd Mesh module 7.2 is for receiving in MESH
After the signal that device is sent, and it is transmitted to emergency command case 8;The 2nd Mesh module 7.2 and the 5th Anneta module 7.3 and company
It connects, for increasing the 2nd Mesh module radiant power and anti-interference ability.
Above-mentioned emergency command case 8 includes server 8.1, display 8.2, memory 8.3, second microphone 8.4, earphone
8.5 and the 3rd 4G/5G module 8.6;The server 8.1 and the 3rd 4G/5G module 8.6, display 8.2, memory 8.3,
Two microphones 8.4, earphone 8.5 connect, and the server receives data, the Intelligent bracelet 2 that indoor positioning module 1 acquires and acquires
The video data that the data such as heart rate, pressure value and the audio-video helmet 4 acquire, stores to memory 8.3, and send data to
First display shows 8.2, shows that 8.2 are shown by the first display, and audio signal transmission is commanded to earphone 8.5
Dispatcher carries out decision according to the information received, assigns instruction by second microphone 8.4, while passing through the 3rd 4G/5G
Module 8.6 is by the data transmission received to command centre 9.
The server of emergency command case can receive MESH host according to field condition and pass through MESH network or 4G/5G network
The information of sending;In addition, the server of emergency command case can receive rescue beacon according to field condition passes through lora radio frequency or 4G/
The information that 5G network issues.
In addition, individual soldier's emergency management and rescue intelligent wearable device that the utility model embodiment proposes has spare interface, it can basis
Actual needs carries out modular arrangements, such as GA gas alarm module, life calling instrument module, Voice Navigation module, can match on demand
It sets, favorable expandability.
The working method for individual soldier's emergency management and rescue intelligent wearable device that the utility model embodiment proposes are as follows:
Indoor positioning module 1 will be collected by the information such as collected rescue personnel position, posture and Intelligent bracelet 2
Rescue personnel's heart rate, blood pressure information pass through in Bluetooth transmission to the bluetooth master control borad of rescue beacon, the bluetooth master control borad of rescue beacon 3
On serial ports 232 of the information Jing Guo first serial module be transformed into lora rf board, lora signal is through second serial module transfer
To the first 4G/5G module, lora rf board and the first 4G/5G module send data to emergency command case simultaneously;The audio-video helmet
Micro- video camera, the sound of the first microphone acquisition, video information MESH host is sent to by signal wire, MESH host will reception
Signal processing after, the first MESH module and the 2nd 4G/5G module send signal outward respectively in MESH host, MESH net letter
Number MESH repeater is sent to by MESH network, is jumped by several MESH repeaters, be sent to MESH receiving host, MESH
Receiving host is by signal wire transmission to emergency command case, while the signal of the 2nd 4G/5G module sending is transferred to through base station and answers
Anxious commander's case, emergency command case can be according to the stronger data of strong and weak selection signal of signal, audio/video information and rescue beacon information
It after server process, stores to memory, transmits information to the first display and show, by audio signal transmission to ear
Machine;Command scheduling personnel carry out decision according to the information received, assign instruction, command signal is by above-mentioned path transmission to phase
It answers in device;The information that emergency command case receives simultaneously is sent to command centre by the way that 4G/5G the whole network is logical.
It is above-mentioned although specific embodiments of the present invention are described with reference to the accompanying drawings, but it is not practical new to this
The limitation of type protection scope, those skilled in the art should understand that, based on the technical solution of the present invention, ability
Field technique personnel do not need to make the creative labor the various modifications or changes that can be made still in the protection model of the utility model
Within enclosing.
Claims (10)
1. a kind of individual soldier's emergency management and rescue intelligent wearable device, characterized in that including indoor positioning module, Intelligent bracelet, rescue beacon,
The audio-video helmet, MESH host, several MESH repeaters, MESH receiving host and emergency command case;
The indoor positioning module includes the first bluetooth module and the first data acquisition module, first data acquisition module
Output end is connect with the first bluetooth module, and first bluetooth module sends the first Bluetooth signal to rescue beacon;
The Intelligent bracelet includes bracelet ontology and is arranged in intrinsic second bluetooth module of bracelet, the second data acquisition module
The output end of block, second data acquisition module is connect with the second bluetooth module, and second bluetooth module is sent out to rescue beacon
Send the second Bluetooth signal;
The rescue beacon includes bluetooth main control module, first serial module, radio-frequency module, second serial module, the first channel radio
Believe module, the bluetooth main control module receives the first Bluetooth signal and the second Bluetooth signal, the output of the bluetooth main control module
End is connected by the input terminal of first serial module and radio-frequency module, and the output end of the radio-frequency module passes through second serial module
It is connect with the first wireless communication module, the radio-frequency module or the first wireless communication module are wireless to emergency command case transmission first
Signal;
The audio-video helmet includes protective helmet ontology and the miniature webcam, the osteoacusis ear that are nested on protective helmet ontology
Machine and the first microphone, the miniature webcam, bone conduction earphone and the first microphone are connect with MESH host respectively, described
MESH host sends the signal to MESH receiving host by MESH repeater, and MESH receiving host transmits the signal received
To emergency command case, while MESH host transmits a signal to emergency command case by the second wireless communication module;
The emergency command case includes server and third wireless communication module, and the server and third wireless communication module connect
It connects, receives the first wireless signal that rescue beacon is sent and the signal that MESH host is sent, and will by third wireless communication module
The signal received is sent to command centre.
2. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that the indoor positioning module,
Intelligent bracelet, rescue beacon, MESH host, MESH repeater, MESH receiving host and emergency command case respectively further comprise power supply mould
Block, the power module, for the electric energy needed for being provided to each module.
3. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that first data acquisition module
Block includes magnetometer, inertial sensor and gyro sensor, the magnetometer, inertial sensor and gyro sensor it is defeated
Outlet is connect with the first bluetooth module respectively;Second data acquisition module uses PPG heart rate sensor, the acquisition of the second data
Module is also connected with LED display unit.
4. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that the rescue beacon further include with
The sound and light alarm module of bluetooth main control module connection.
5. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that the bluetooth main control module is adopted
With HDFI/SI-LYZ type bluetooth master control borad, the bluetooth master control borad includes processor and memory connected to the processor, bluetooth
Receiving module;The radio-frequency module uses HDFI/SI-lora type lora rf board, and the lora rf board includes being connected
Noise reduction module and on-off model input/output module.
6. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that the MESH host includes the
One Mesh module, audio/video encoding/decoding module, third serial port module, the second wireless communication module and interchanger, the audio-video
The input terminal of coding/decoding module is connect with miniature webcam, bone conduction earphone and the first microphone, the audio/video encoding/decoding mould
The output end of block is connect with the input terminal of the first Mesh module, and the output end of the first Mesh module passes through third serial port module
It is connect with the second wireless communication module, the first Mesh module is also connect with interchanger, and the first Mesh module is to MESH
Network signaling;Second wireless communication module sends signal to emergency command case.
7. individual soldier's emergency management and rescue intelligent wearable device according to claim 6, characterized in that the MESH repeater includes
The input terminal of wireless receiving module, wireless transmitter module and microprocessor, the microprocessor is connect with wireless receiving module, is connect
Receive the signal that MESH host is sent;The output end of the microprocessor is connect with wireless transmitter module, passes through wireless transmitter module
Signal is sent to MESH receiving host;
The MESH receiving host includes the 2nd Mesh module;The 2nd Mesh module receives the letter that MESH repeater is sent
Number, and it is transmitted to the server of emergency command case.
8. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that the emergency command case also wraps
Include the display connecting with server, memory, second microphone and earphone.
9. individual soldier's emergency management and rescue intelligent wearable device according to claim 1, characterized in that first radio communication mold
4G or 5G module is respectively adopted in block, the second wireless communication module and third wireless communication module.
10. individual soldier's emergency management and rescue intelligent wearable device according to claim 7, characterized in that first bluetooth module,
Second bluetooth module, bluetooth main control module, radio-frequency module, the first wireless communication module, the first Mesh module, the second wireless communication
Module, the 2nd Mesh module are connected separately with Anneta module.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820931225.2U CN208424610U (en) | 2018-06-14 | 2018-06-14 | Individual soldier's emergency management and rescue intelligent wearable device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820931225.2U CN208424610U (en) | 2018-06-14 | 2018-06-14 | Individual soldier's emergency management and rescue intelligent wearable device |
Publications (1)
Publication Number | Publication Date |
---|---|
CN208424610U true CN208424610U (en) | 2019-01-22 |
Family
ID=65109169
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201820931225.2U Active CN208424610U (en) | 2018-06-14 | 2018-06-14 | Individual soldier's emergency management and rescue intelligent wearable device |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN208424610U (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113163517A (en) * | 2021-02-09 | 2021-07-23 | 四川天奥空天信息技术有限公司 | Complex environment multimode fusion emergency communication equipment |
US11290575B2 (en) | 2020-02-06 | 2022-03-29 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
US11357020B2 (en) | 2020-02-06 | 2022-06-07 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
US11405766B2 (en) | 2020-02-06 | 2022-08-02 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
-
2018
- 2018-06-14 CN CN201820931225.2U patent/CN208424610U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US11290575B2 (en) | 2020-02-06 | 2022-03-29 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
US11357020B2 (en) | 2020-02-06 | 2022-06-07 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
US11405766B2 (en) | 2020-02-06 | 2022-08-02 | International Business Machines Corporation | Connecting computer processing systems and transmitting data |
CN113163517A (en) * | 2021-02-09 | 2021-07-23 | 四川天奥空天信息技术有限公司 | Complex environment multimode fusion emergency communication equipment |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN108521565A (en) | Individual soldier's emergency management and rescue intelligent wearable device | |
CN208424610U (en) | Individual soldier's emergency management and rescue intelligent wearable device | |
CN108093228A (en) | A kind of construction site recruitment monitoring service system | |
CN110234075A (en) | Fireman's positioning and vital sign monitoring method under a kind of complexity emergency management and rescue environment | |
CN109195115B (en) | System and method for implementing voice paging and broadcasting by using narrow-band network | |
CN204836424U (en) | Individual soldier's helmet monitored control system | |
CN208836303U (en) | A kind of unmanned plane Wireless Image Transmission Systems passed based on microwave figure | |
CN207055746U (en) | A kind of intelligent fire rescue command dispatches system | |
CN108008427A (en) | Marine persons falling in water intelligence search and rescue system | |
CN209659633U (en) | A kind of multifunctional portable individual soldier communication device and individual reconnaissance command system | |
CN201407494Y (en) | Flashlight with GPS direction implement | |
CN108834061A (en) | Crew area positioning and management system and method based on active tag wristband | |
CN202070041U (en) | Fire protective clothing with embedded integrated environment sensing device | |
CN202587140U (en) | Personal locator for identity recognition | |
CN208524855U (en) | A kind of intelligent fire bracelet | |
CN206402351U (en) | Emergency commading system | |
CN210721726U (en) | Low-power-consumption gateway based on 433M communication system | |
CN206962799U (en) | A kind of individual soldier for merging communication launches host computer system | |
CN210986437U (en) | Mine environment accurate positioning system based on UWB technology | |
CN211908864U (en) | Personnel physiological monitoring system applied outdoors | |
CN211040912U (en) | Intelligent mine lamp based on Internet of things | |
CN216819978U (en) | Individual soldier emergency rescue audio and video transmission equipment | |
CN110992613A (en) | Low-power-consumption gateway based on 433M communication system and call answering method | |
CN112039548B (en) | Intelligent wearable water area rescue equipment communication system | |
CN206960952U (en) | A kind of interconnection type guest room control system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |