CN215818379U - Air emergency rescue command system - Google Patents

Air emergency rescue command system Download PDF

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Publication number
CN215818379U
CN215818379U CN202120691292.3U CN202120691292U CN215818379U CN 215818379 U CN215818379 U CN 215818379U CN 202120691292 U CN202120691292 U CN 202120691292U CN 215818379 U CN215818379 U CN 215818379U
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module
emergency rescue
rescue
air
input
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CN202120691292.3U
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范升
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Shanghai Europe Air Emergency Rescue Nanjing Co ltd
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Shanghai Europe Air Emergency Rescue Nanjing Co ltd
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Abstract

The utility model discloses an air emergency rescue command system, relates to the technical field of air emergency rescue, and aims to solve the problems that rescue command personnel cannot accurately know the condition of an air emergency accident, so that the adopted measures are poor in rescue efficiency, the optimal rescue opportunity is missed, and the emergency rescue efficiency is poor. The aerial terminal that removes realizes wireless two-way connection with command center through 4G communication module and GPRS network module, the inside of aerial terminal that removes is provided with the network video module, and the network video module is supplied power by aerial terminal built-in power that removes, the network video module includes image collector, voice collector and data storage, and image collector and voice collector's the equal electric connection of output and data storage's input, data storage's output and GPRS network module's input wireless connection.

Description

Air emergency rescue command system
Technical Field
The utility model relates to the technical field of air emergency rescue, in particular to an air emergency rescue command system.
Background
Currently, human society faces many sudden events caused by natural disasters or human factors, and emergency rescue generally refers to taking actions and plans for preventing, preparing, responding and recovering from sudden and destructive emergencies. According to different types of emergency events, the emergency rescue method is divided into the emergency rescue in the fields of sanitary emergency, traffic emergency, fire emergency, earthquake emergency, factory and mine emergency, family emergency and the like. Controlling the occurrence and expansion of emergency events by the emergency event; effective rescue is carried out, loss is reduced, and the recovery to a normal state is organized rapidly. The command system is used for ensuring the safety of the lives and properties of the public by establishing a necessary coping mechanism and taking a series of necessary measures in the processes of pre-prevention, incident coping, in-process handling and after-process management of emergencies by governments and other public institutions.
At present, an emergency rescue command system is implemented mainly by a method for rescue command personnel to make a decision and organize on site, and the accident may cut off the connection between the air and the ground, so that the rescue command personnel cannot accurately know the condition of the air emergency accident, the adopted measures have poor rescue efficiency, the optimal rescue opportunity is missed, the emergency rescue efficiency is poor, and the use requirement cannot be met. Therefore, an air emergency rescue command system is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an air emergency rescue command system to solve the problems that rescue command personnel cannot accurately know the condition of an air emergency accident in the background technology, so that the adopted measures have poor rescue efficiency, the optimal rescue opportunity is missed, and the emergency rescue efficiency is poor.
In order to achieve the purpose, the utility model provides the following technical scheme: an air emergency rescue command system comprises an air mobile terminal, a command center, a 4G communication module and a GPRS network module; the aerial terminal that removes realizes wireless two-way connection with command center through 4G communication module and GPRS network module, the inside of aerial terminal that removes is provided with the network video module, and the network video module is supplied power by aerial terminal built-in power that removes, the network video module is provided with image collector, voice collector and data storage, and image collector and voice collector's the equal electric connection of output and data storage's input, data storage's output and GPRS network module's input wireless connection.
Preferably, a processor is arranged in the command center, the processor is made of a control module with the model of PIC24HJ, the model of the image collector is BSJ-P6, the model of the voice collector is YK-DM18Y-V, the model of the data storage is FM24C16A-GTR, and the GPRS network module is made of an RS-485 communication chip.
Preferably, a first microphone is arranged inside the air moving end, a second microphone is arranged inside the command center, the first microphone is in wireless two-way connection with the second microphone through a 4G communication module, and the first microphone and the second microphone are both UHF section microphones.
Preferably, the command center comprises a positioning navigation module, the positioning navigation module is provided with an accident locator and a map database, the output end of the accident locator is wirelessly connected with the processor, the output end of the map database is electrically connected with the processor, and the accident locator is HJKD-002 in model.
Preferably, the command center includes emergency rescue module, emergency rescue module divide into emergency rescue road and dredges the dispatch, emergency rescue vehicle dispatch and emergency rescue personnel dispatch, emergency rescue module mainly relies on public address loudspeaker and adjusts the traffic pilot lamp and dispatches, and public address loudspeaker and traffic pilot lamp are controlled by the controller, the output of treater and the input wireless connection of controller, the output of controller respectively with the input electric connection of public address loudspeaker and traffic pilot lamp, the model of controller is HDQM 2.
Preferably, the output of GPRS network module and the input wireless connection of treater, the display includes decoder and display screen, and the output of decoder and the input electric connection of display screen, the input of decoder and the output electric connection of treater, the model of decoder is LD-6001D.
Compared with the prior art, the utility model has the beneficial effects that:
1. the utility model discloses a device passes through the setting of network video module and display, can gather the condition around the emergence of aerial emergency accident with the help of image collector, voice collector can gather the sound on every side and store in data storage ware, will store data transmission to command center with the help of GPRS network module, and look the screen with the help of the decoder and decode audio-visual demonstration on the display screen, be convenient for let rescue commander in time know the emergence particular case, make effectual emergency rescue measure fast. The problem of can accurately know the occurence of failure situation, make effectual rescue measure fast, improve rescue efficiency is solved.
2. The utility model discloses a device is through the setting of 4G communication module and microphone, and the microphone can carry out pronunciation input and broadcast, links up with aerial relevant personnel with the help of the rescue measure that 4G communication module can be done, is convenient for cooperate with the rescue personnel, improves the rescue quality. The problem of commander and air relevant personnel communicate, cooperate rescue personnel to expand the rescue is solved.
3. The utility model discloses a device can dredge road traffic with the help of public address loudspeaker and traffic light through the setting of public address loudspeaker and traffic light, and the medical personnel and the vehicle of being convenient for are current, reduce the unnecessary time loss of rescue in-process, improve the first-aid staff and go out to move efficiency. The problem of medical personnel and vehicle time loss on the way is solved.
Drawings
FIG. 1 is a schematic diagram of an aerial emergency rescue command system of the present invention;
FIG. 2 is a schematic diagram of a 4G communication module according to the present invention;
FIG. 3 is a schematic diagram of a network video module according to the present invention;
fig. 4 is a schematic diagram of the positioning navigation module and the emergency rescue module according to the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-4, an embodiment of the present invention is shown: the aerial emergency rescue command system comprises an aerial mobile terminal, a command center, a 4G communication module and a GPRS network module, wherein the aerial mobile terminal is in wireless bidirectional connection with the command center through the 4G communication module and the GPRS network module, a network video module is arranged inside the aerial mobile terminal and powered by a built-in power supply of the aerial mobile terminal, the network video module is provided with an image collector, a voice collector and a data storage, the output ends of the image collector and the voice collector are electrically connected with the input end of the data storage, and the output end of the data storage is in wireless connection with the input end of the GPRS network module. The network video module can reflect the specific conditions of the air accidents to the command center, so that rescue command personnel can take rescue measures conveniently.
Further, a processor is arranged in the command center, the processor is made of a control module with the model of PIC24HJ, the model of an image collector is BSJ-P6, the model of a voice collector is YK-DM18Y-V, the model of a data storage is FM24C16A-GTR, and the GPRS network module is made of an RS-485 communication chip.
Furthermore, the inside first microphone that is provided with of aerial removal end, command center's inside is provided with the second microphone, and wireless both way junction is realized through 4G communication module and second microphone to first microphone, and first microphone and second microphone all adopt UHF section formula microphone. The voice communication between commanders and related aerial personnel can be realized through the microphone by means of the 4G communication module, and the rescue work can be conveniently carried out by matching with rescue workers.
Furthermore, the command center comprises a positioning navigation module, the positioning navigation module is provided with an accident occurrence locator and a map database, the output end of the accident occurrence locator is wirelessly connected with the processor, the output end of the map database is electrically connected with the processor, and the type of the accident occurrence locator is HJKD-002. The accident location in the air can be positioned through the accident positioner, so that the accident location can be accurately displayed, and rescue is facilitated.
Further, command center includes the emergency rescue module, the emergency rescue module divide into emergency rescue road and dredges the dispatch, emergency rescue vehicle dispatch and reply first aid rescue personnel dispatch, the emergency rescue module mainly relies on public address loudspeaker and adjusts the traffic light and dispatches, and public address loudspeaker and traffic light are controlled by the controller, the output of treater and the input wireless connection of controller, the output of controller respectively with the input electric connection of public address loudspeaker and traffic light, the model of controller is HDQM 2. Can dredge road traffic through public address loudspeaker and traffic pilot lamp, ensure medical personnel and vehicle's current, improve work efficiency.
Furthermore, the output end of the GPRS network module is wirelessly connected with the input end of the processor, the display comprises a decoder and a display screen, the output end of the decoder is electrically connected with the input end of the display screen, the input end of the decoder is electrically connected with the output end of the processor, and the type of the decoder is LD-6001D. The data that can will gather through the display screen direct-viewing display, the personnel of being convenient for know the rescue condition.
The working principle is as follows: when the emergency rescue system is used, when an accident occurs at the air mobile terminal and emergency rescue is needed, the emergency request is sent to the ground command center by means of the GPRS network module. The image collector and the voice collector inside the air mobile terminal can collect and store the specific conditions of the accident into the data storage, and can transmit data to the command center by means of the GPRS network module, so that rescue command personnel can accurately know the specific conditions of the air accident, and an effective rescue scheme can be conveniently and quickly adopted. Related personnel in the aerial mobile terminal can communicate rescue measures with related personnel with command center personnel by means of the 4G communication module, rescue workers can conveniently carry out rescue work, and rescue efficiency is indirectly improved. The air accident can be positioned by the aid of the positioning navigation module, the accident occurrence point can be accurately known, and rescue can be conveniently carried out by a rescue team closest to the air accident. Emergency rescue road dredging scheduling can communicate with relevant departments in places, road traffic is dredged by means of the loudspeaker and the traffic indicator lamp, rescue workers and vehicles can be ensured to pass rapidly, rescue work efficiency is improved, and rescue errors are reduced.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. An air emergency rescue command system comprises an air mobile terminal, a command center, a 4G communication module and a GPRS network module; the method is characterized in that: the aerial terminal that removes realizes wireless two-way connection with command center through 4G communication module and GPRS network module, the inside of aerial terminal that removes is provided with the network video module, and the network video module is supplied power by aerial terminal built-in power that removes, the network video module is provided with image collector, voice collector and data storage, and image collector and voice collector's the equal electric connection of output and data storage's input, data storage's output and GPRS network module's input wireless connection.
2. An air emergency rescue command system according to claim 1, characterized in that: the intelligent voice prompt system is characterized in that a processor is arranged in the command center, the processor is made of a control module with the model of PIC24HJ, the image collector is BSJ-P6, the voice collector is YK-DM18Y-V, the data storage is FM24C16A-GTR, and the GPRS network module is made of an RS-485 communication chip.
3. An air emergency rescue command system according to claim 1, characterized in that: the aerial mobile terminal is internally provided with a first microphone, the command center is internally provided with a second microphone, the first microphone is in wireless two-way connection with the second microphone through a 4G communication module, and the first microphone and the second microphone are both UHF section microphones.
4. An air emergency rescue command system according to claim 1, characterized in that: the command center comprises a positioning navigation module, the positioning navigation module is provided with an accident occurrence locator and a map database, the output end of the accident occurrence locator is in wireless connection with the processor, the output end of the map database is electrically connected with the processor, and the accident occurrence locator is HJKD-002 in model.
5. An air emergency rescue command system according to claim 2, characterized in that: the command center comprises an emergency rescue module, the emergency rescue module is divided into emergency rescue road dredging scheduling, emergency rescue vehicle scheduling and emergency rescue personnel scheduling, the emergency rescue module mainly depends on a loudspeaker and adjusts a traffic indicator lamp to schedule, the loudspeaker and the traffic indicator lamp are controlled by a controller, the output end of the processor is wirelessly connected with the input end of the controller, the output end of the controller is electrically connected with the input ends of the loudspeaker and the traffic indicator lamp respectively, and the controller is HDQM2 in type.
6. An air emergency rescue command system according to claim 2, characterized in that: the inside of command center is provided with the display, the output of GPRS network module and the input wireless connection of treater, the display includes decoder and display screen, and the output of decoder and the input electric connection of display screen, the input of decoder and the output electric connection of treater, the model of decoder is LD-6001D.
CN202120691292.3U 2021-04-06 2021-04-06 Air emergency rescue command system Active CN215818379U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120691292.3U CN215818379U (en) 2021-04-06 2021-04-06 Air emergency rescue command system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120691292.3U CN215818379U (en) 2021-04-06 2021-04-06 Air emergency rescue command system

Publications (1)

Publication Number Publication Date
CN215818379U true CN215818379U (en) 2022-02-11

Family

ID=80162893

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120691292.3U Active CN215818379U (en) 2021-04-06 2021-04-06 Air emergency rescue command system

Country Status (1)

Country Link
CN (1) CN215818379U (en)

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