Vehicle emergency contact system and vehicle

Through the design of the collision reception module, emergency contact module and Bluetooth module in the vehicle emergency contact system, the problem of inability to call for help in a timely manner in a vehicle accident is solved, timely communication with emergency contact persons is achieved, and the call efficiency and crew rescue effect are improved.

CN223142143UActive Publication Date: 2025-07-22GREAT WALL MOTOR CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422390203.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-22
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The existing emergency call system may not be able to call for help in time when a vehicle accident occurs, which will affect the treatment of the injured, and there is a problem of accidental triggering of mobile phone emergency calls.

Method used

Design a vehicle emergency contact system, including a collision reception module, an emergency contact module, a Bluetooth module and a proximity device. Through the connection relationship of these modules, the reception, processing of vehicle collision signals and communication between the terminal equipment of the emergency contact person is realized to ensure timely call for help.

Benefits of technology

The efficiency of call for help and crew rescue efficiency have been improved, the difficulty of rescue is reduced, and the success rate and effectiveness of call for help have been enhanced.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223142143U_ABST
    Figure CN223142143U_ABST
Patent Text Reader

Abstract

According to the vehicle emergency contact system and the vehicle provided by the utility model, through the collision receiving module, the emergency contact module, the Bluetooth module and the near-end equipment as well as the connection relation among the collision receiving module, the emergency contact module, the Bluetooth module and the near-end equipment, when the vehicle is collided, the vehicle can be connected with the Bluetooth module and the near-end equipment; according to the method and the device, communication with the terminal equipment of the emergency contact person is carried out, so that communication with the emergency contact person can be timely and spontaneously realized when the vehicle is collided, the call-for-help efficiency is improved, and the passenger rescue efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of vehicle safety, and particularly relates to a vehicle emergency contact system and a vehicle. Background Art

[0002] With the continuous development of the economy, the vehicle ownership has increased year by year. As a result, the number of traffic accidents has also increased. When a vehicle accident occurs, timely alarm for help can effectively improve the survival rate of the injured.

[0003] On the one hand, the existing emergency call system needs to rely on the dedicated communication network on the vehicle. On the other hand, the emergency call of the mobile phone has deficiencies in the accident detection accuracy, and it is easy to be accidentally triggered due to the situation of the mobile phone falling, etc., affecting the calling efficiency and the treatment of the injured. Summary of the Utility Model

[0004] In view of this, the embodiments of the utility model provide a vehicle emergency contact system and a vehicle to solve the problem that in the prior art, when a vehicle collision accident occurs, it may not be able to call for help in time, affecting the treatment of the injured.

[0005] The first aspect of the embodiments of the utility model provides a vehicle emergency contact system, including a collision receiving module, an emergency contact module, a Bluetooth module and a proximal device; the collision receiving module is connected to the emergency contact module, the emergency contact module is connected to the Bluetooth module, and the Bluetooth module is connected to the proximal device;

[0006] The collision receiving module is configured to receive a vehicle collision signal sent by a vehicle controller and send the vehicle collision signal to the emergency contact module;

[0007] The emergency contact module is configured to, after receiving the vehicle collision signal, send the communication information of the terminal device of the emergency contact person to the proximal device through the Bluetooth module;

[0008] The proximal device communicates with the terminal device of the emergency contact person through the communication information.

[0009] The vehicle emergency contact system provided in this embodiment includes a collision receiving module, an emergency contact module, a Bluetooth module and a proximal device. The collision receiving module receives the vehicle collision signal sent by the vehicle controller and sends it to the emergency contact module. After receiving the vehicle collision signal, the emergency contact module sends the communication information of the terminal device of the emergency contact person to the proximal device through the Bluetooth module. Thus, the communication between the proximal device and the terminal device is realized, and when a vehicle collision occurs, the communication with the emergency contact person can be realized timely and spontaneously, improving the calling efficiency and thus improving the rescue efficiency of the occupants.

[0010] In some possible implementation manners, the vehicle collision signal is a vehicle collision intensity signal, and there are multiple emergency contacts;

[0011] The emergency contact module includes a switching unit and a sending unit. The collision receiving module is connected to the input end of the switching unit, the output end of the switching unit is connected to the input end of the sending unit, and the output end of the sending unit is connected to the Bluetooth module;

[0012] The collision receiving module is configured to send the vehicle collision intensity signal to the switching unit, and the switching unit is configured to send the communication information of the terminal devices of at least one emergency contact to the Bluetooth module through the sending unit.

[0013] In this embodiment, through the connection relationships among the collision receiving module, the switching unit and the sending unit included in the emergency contact module, and the Bluetooth module, the vehicle collision intensity signal can be associated with the communication information of the terminal devices of different emergency contacts, so that when the vehicle collides, the proximal device can communicate with the terminal devices of the corresponding emergency contacts, further improving the efficiency and effectiveness of calling for help.

[0014] In some possible implementation manners, the vehicle collision intensity signal carries the intensity of the vehicle collision;

[0015] The switching unit includes a receiver and a multiplexer switching circuit. The multiplexer switching circuit consists of multiple parallel switching switches and serial interfaces; wherein, one switching switch is connected to one serial interface, the conduction signal intensity of each switching switch is different, and each serial interface stores the communication information of the terminal device of a corresponding emergency contact;

[0016] The collision receiving module is connected to the input end of the receiver. The receiver is configured to receive the vehicle collision intensity signal sent by the collision receiving module. The output end of the receiver is respectively connected to the input ends of each switching switch. Each switching switch is connected to the input end of a serial interface, and the output end of each serial interface is connected to the sending unit.

[0017] In this embodiment, through the receiver in the switching unit, the multiplexer switching circuit, and the connection relationships between the switching switches and the serial interfaces in the multiplexer switching circuit, the correspondence between the intensity of the vehicle collision and the communication information of the terminal devices of the emergency contacts can be realized, and the automatic switching selection of the emergency contact objects is achieved, so that when the vehicle collides, the proximal device can communicate with the terminal devices of the corresponding emergency contacts, further improving the efficiency and effectiveness of calling for help.

[0018] In some possible implementation manners, the vehicle emergency contact system further includes a voice module and a positioning module. The collision receiving module is respectively connected to the input ends of the voice module and the positioning module, and the output ends of the voice module and the positioning module are respectively connected to the Bluetooth module;

[0019] The voice module is configured to, when receiving the vehicle collision signal, send pre-stored distress information to the proximal device through the Bluetooth module. The positioning module is configured to, when receiving the vehicle collision signal, send the positioning information of the vehicle to the proximal device through the Bluetooth module. The proximal device sends the distress information and the positioning information to the terminal device of the emergency contact person.

[0020] In some possible implementation manners, the vehicle emergency contact system further includes a speaker, and the voice module is connected to the speaker;

[0021] The voice module is further configured to, when receiving the vehicle collision signal, send the distress information to the speaker, and the speaker is configured to play the received distress information.

[0022] In this embodiment, through the voice module, the positioning module, the speaker, the Bluetooth module, and the connection relationships among the voice module, the positioning module, the speaker, and the Bluetooth module, when the vehicle collides, the proximal device can obtain the distress information and the positioning information of the vehicle, and further send the distress information and the positioning information to the terminal device of the emergency contact person, which can further improve the distress calling efficiency and greatly reduce the rescue difficulty. Moreover, by playing the distress information through the speaker, the diversification of distress calling is realized and the distress calling success rate is improved.

[0023] In some possible implementation manners, the vehicle emergency contact system further includes an occupant monitoring module. The collision receiving module is connected to the occupant monitoring module, and the occupant monitoring module is connected to the Bluetooth module.

[0024] The occupant monitoring module is configured to, when receiving the vehicle collision signal, capture an image of the occupants in the vehicle occupant compartment and send the image to the proximal device through the Bluetooth module. The proximal device sends the image to the terminal device of the emergency contact person.

[0025] In some possible implementation manners, the occupant monitoring module includes a plurality of camera components, and the plurality of camera components are respectively arranged at different positions in the vehicle occupant compartment.

[0026] In this embodiment, through the collision receiving module, the occupant monitoring module, the Bluetooth module, and the connection relationships among the collision receiving module, the occupant monitoring module, and the Bluetooth module, when a vehicle collision occurs, the proximal device can obtain the images of the vehicle occupants in the passenger compartment, and further send the images of the vehicle occupants in the passenger compartment to the terminal device of the emergency contact person, so that the emergency contact person can timely know the status of the occupants, thereby facilitating the emergency contact person to adopt reasonable rescue methods and improving the rescue efficiency.

[0027] In some possible implementation manners, the vehicle emergency contact system further includes a collision protection module, and the collision receiving module is connected to the collision protection module;

[0028] The collision protection module is configured to activate the collision protection function when receiving the vehicle collision signal.

[0029] In this embodiment, through the collision receiving module and the collision protection module, and the connection relationship between the collision receiving module and the collision protection module, when a vehicle collision occurs, the collision protection function can be timely activated to protect the safety of the occupants to the greatest extent.

[0030] In some possible implementation manners, the emergency contact module and the Bluetooth module are integrated in the vehicle's multimedia host (Head Unit System, HUT).

[0031] A second aspect of the embodiments of the present invention provides a vehicle, including any one of the vehicle emergency contact systems provided in the first aspect of the embodiments of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0033] Figure 1 is a schematic structural diagram of a vehicle emergency contact system provided by an embodiment of the present invention;

[0034] Figure 2 is a schematic structural diagram of a vehicle emergency contact system provided by another embodiment of the present invention;

[0035] Figure 3 is a schematic structural diagram of a vehicle emergency contact system provided by still another embodiment of the present invention;

[0036] Figure 4It is a schematic structural diagram of a vehicle emergency contact system provided by another embodiment of the present utility model. Detailed implementation manners

[0037] In the following description, specific details such as specific system structures and technologies are presented for the purpose of illustration rather than limitation, so as to thoroughly understand the embodiments of the present utility model. However, those skilled in the art should clearly understand that the present utility model can also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present utility model.

[0038] In order to illustrate the technical solution of the present utility model, it will be described below through specific embodiments.

[0039] Refer to Figure 1 , an embodiment of the present utility model provides a vehicle emergency contact system, including a collision receiving module 11, an emergency contact module 12, a Bluetooth module 13, and a proximal device 14; the collision receiving module 11 is connected to the emergency contact module 12, the emergency contact module 12 is connected to the Bluetooth module 13, and the Bluetooth module 13 is connected to the proximal device 14.

[0040] The collision receiving module 11 is configured to receive a vehicle collision signal sent by a vehicle controller and send the vehicle collision signal to the emergency contact module 12.

[0041] The emergency contact module 12 is configured to, after receiving the vehicle collision signal, send communication information of the terminal device of the emergency contact person to the proximal device 14 through the Bluetooth module 13.

[0042] The proximal device 14 communicates with the terminal device of the emergency contact person through the communication information.

[0043] Among them, in this embodiment, the collision receiving module 11 may be an in-vehicle gateway having signal transceiver functions, etc.

[0044] The emergency contact module 12 may be an in-vehicle communication module, which includes a receiver and a multiplexer switching circuit inside. The multiplexer switching circuit is composed of a plurality of parallel switching switches and a serial interface.

[0045] The proximal device refers to various hardware and software devices used inside or near the vehicle. In this embodiment, the proximal device 14 is a terminal device with an automatic dialing function that is wirelessly communicatively connected to the Bluetooth module 13 of the vehicle, such as a mobile phone, a smart watch, etc.

[0046] In this embodiment, the terminal device of the emergency contact person is a terminal device that can communicate with the proximal device 14, such as a mobile phone, a smart watch, etc.

[0047] In this embodiment, the collision receiving module 11 can receive the vehicle collision signal sent by the vehicle controller in real time and send the received vehicle collision signal to the emergency contact module 12. After receiving the vehicle collision signal sent by the collision receiving module 11, the emergency contact module 12 sends the communication information of the terminal device of the emergency contact person to the proximal device 14 through the Bluetooth module 13, and the proximal device 14 communicates with the terminal device of the emergency contact person through the communication information.

[0048] In some possible implementation manners, the emergency contact module 12 and the Bluetooth module 13 can be integrated into the HUT of the vehicle. The collision receiving module 11 can also be integrated into the HUT of the vehicle. The collision detection module in the vehicle can send the collision result to the HUT, and the HUT transmits the vehicle collision signal to the collision receiving module 11. This embodiment can communicate with the emergency contact person in a timely and spontaneous manner by using the HUT function, the proximal device, and the terminal device of the emergency contact person, without the need for additional devices, which improves the help - calling efficiency and reduces the cost, and is suitable for practical applications.

[0049] In addition, the emergency contact module 12, the Bluetooth module 13, and the collision receiving module 11 can also be integrated at other positions of the vehicle, which can be specifically set according to actual needs and are not specifically limited herein.

[0050] There is a wireless communication connection between the Bluetooth module 13 and the proximal device 14. The proximal device 14 can be a terminal device with an automatic dialing function.

[0051] In some possible implementation manners, the vehicle collision signal can be a vehicle collision intensity signal.

[0052] See Figure 2 , the vehicle collision signal is a vehicle collision intensity signal, and there are multiple emergency contact persons; the emergency contact module 12 includes a switching unit 21 and a sending unit 22. The collision receiving module 11 is connected to the input end of the switching unit 21, the output end of the switching unit 21 is connected to the input end of the sending unit 22, and the output end of the sending unit 22 is connected to the Bluetooth module 13.

[0053] The collision receiving module 11 is used to send the vehicle collision intensity signal to the switching unit 21, and the switching unit 21 is used to send the communication information of the terminal devices of at least one emergency contact person to the Bluetooth module 13 through the sending unit 22.

[0054] In this embodiment, the vehicle collision signal sent by the vehicle controller to the collision receiving module 11 is a vehicle collision intensity signal, and the vehicle collision intensity signal refers to the information about the collision intensity detected by the collision sensor and uploaded to the vehicle controller when the vehicle collides.

[0055] In this embodiment, the switching unit 21 is used to switch the emergency contact mode. For example, the switching unit 21 is used to turn on the circuit path of the communication information of the emergency contact person corresponding to the collision intensity signal.

[0056] The vehicle emergency contact system provided in this embodiment includes a collision receiving module 11, an emergency contact module 12, a Bluetooth module 13, and a proximal device 14. Through the connection relationships among the collision receiving module 11, the emergency contact module 12, the Bluetooth module 13, and the proximal device 14, when a vehicle collision occurs, communication can be established with the terminal device of the emergency contact person. Thus, when a vehicle collision occurs, communication with the emergency contact person can be achieved in a timely and spontaneous manner, improving the calling-for-help efficiency and thus the rescue efficiency for the injured. Moreover, through the connection relationships among the switching unit 21 and the sending unit 22 included in the collision receiving module 11 and the emergency contact module 12 and the Bluetooth module 13, the vehicle collision intensity signal can be associated with the communication information of the terminal device of the emergency contact person, enabling the proximal device 14 to communicate with the terminal device of the corresponding emergency contact person when the vehicle collides, further improving the calling-for-help efficiency and effectiveness.

[0057] In some embodiments, referring to Figure 3 , the switching unit 21 includes a receiver 31 and a multiplexer switching circuit 32. The multiplexer switching circuit 32 consists of a plurality of parallel switching switches and a serial interface; wherein, one switching switch is connected to one serial interface, the intensity of the conduction signal of each switching switch is different, and each serial interface stores the communication information of the terminal device of a corresponding emergency contact person.

[0058] The collision receiving module 11 is connected to the input end of the receiver 31. The receiver 31 is used to receive the vehicle collision intensity signal sent by the collision receiving module 11. The output end of the receiver 31 is respectively connected to the input end of each switching switch. Each switching switch is connected to the input end of a serial interface, and the output end of each serial interface is connected to the sending unit 22.

[0059] Among them, the vehicle collision intensity signal carries the intensity of the vehicle collision. In this embodiment, the switching of the emergency contact mode is achieved through the multiplexer switching circuit 32 and the vehicle collision intensity signal.

[0060] In this embodiment, the collision receiving module 11 sends a vehicle collision intensity signal to the receiver 31. After the receiver 31 receives the collision intensity signal, it transmits the collision intensity signal to the multiplexer switch circuit 32. The collision intensity signal carries the intensity of the vehicle collision. The intensity of the conduction signal of each switch in the multiplexer switch circuit 32 is different. Therefore, the switch in the multiplexer switch circuit 32 corresponding to the collision intensity signal is turned on, and the serial interface connected to the switch and storing the communication information of the corresponding emergency contact's terminal device is turned on. The serial interface transmits the communication information of the emergency contact's terminal device to the connected sending unit 22, and the sending unit 22 sends the received communication information of the emergency contact's terminal device to the Bluetooth module 13. The Bluetooth module 13 sends the communication information of the emergency contact's terminal device to the proximal device 14, and the proximal device 14 communicates with the emergency contact's terminal device through the communication information.

[0061] In this embodiment, the number of switches is the same as the number of serial switches, and each switch is connected to a serial switch. Under the action of the vehicle collision intensity signal, one switch is turned on and the corresponding serial interface is connected. The switch can be a thyristor or other similar conventional trigger circuit.

[0062] In this embodiment, through the receiver 31, the multiplexer switch circuit 32 in the switching unit 21, and the connection relationship between the switch and the serial interface in the multiplexer switch circuit 32, the correspondence between the intensity of the vehicle collision and the communication information of the emergency contact's terminal device can be realized, and the automatic switching selection of the emergency contact object is realized, so that when the vehicle collides, the proximal device 14 can communicate with the corresponding emergency contact's terminal device, further improving the call-for-help efficiency and effectiveness.

[0063] In some embodiments, refer to Figure 4 , the vehicle emergency contact system further includes a voice module 41 and a positioning module 42. The collision receiving module 11 is respectively connected to the input ends of the voice module 41 and the positioning module 42, and the output ends of the voice module 41 and the positioning module 42 are respectively connected to the Bluetooth module 13.

[0064] Among them, the voice module 41 can be an in-vehicle XFS5152CE module.

[0065] The voice module 41 is used to send pre-stored call-for-help information to the proximal device 14 through the Bluetooth module 13 when receiving a vehicle collision signal, and the positioning module 42 is used to send the positioning information of the vehicle to the proximal device 14 through the Bluetooth module 13 when receiving a vehicle collision signal. The proximal device 14 sends the call-for-help information and the positioning information to the emergency contact's terminal device.

[0066] In a feasible implementation, the positioning module 42 can send the real-time position of the vehicle to the proximal device 14 through the Bluetooth module 13. The positioning module 42 can be a Global Positioning System (GPS).

[0067] In some embodiments, the vehicle emergency contact system further includes a speaker 43, and the voice module 41 is connected to the speaker 43.

[0068] The voice module 41 is further configured to send a distress message to the speaker 43 when a vehicle collision signal is received, and the speaker 43 is configured to play the received distress message.

[0069] In a feasible implementation, the speaker 43 is installed inside the vehicle, that is, inside the passenger compartment. The speaker 43 can transmit the distress voice to the terminal device of the emergency contact person through the proximal device 14.

[0070] In another feasible implementation, the speaker 43 is installed outside the vehicle, that is, outside the passenger compartment. The speaker 43 plays the received distress message to call for help from people near the vehicle.

[0071] In this embodiment, through the voice module 41, the positioning module 42, the speaker 43, the Bluetooth module 13, and the connection relationships among the voice module 41, the positioning module 42, the speaker 43, and the Bluetooth module 13, when the vehicle collides, the proximal device 14 can obtain the distress message and the positioning information of the vehicle, and further send the distress message and the positioning information to the terminal device of the emergency contact person, which can further improve the distress call efficiency and greatly reduce the rescue difficulty. Moreover, by playing the distress message through the speaker 43, the diversification of the distress call is realized and the success rate of the distress call is improved.

[0072] In some embodiments, referring to Figure 4 , the vehicle emergency contact system further includes an occupant monitoring module 44. The collision receiving module 11 is connected to the occupant monitoring module 44, and the occupant monitoring module 44 is connected to the Bluetooth module 13.

[0073] The occupant monitoring module 44 is configured to capture an image of the occupants in the vehicle passenger compartment when a vehicle collision signal is received, and send the image to the proximal device 14 through the Bluetooth module 13, and the proximal device 14 sends the image to the terminal device of the emergency contact person.

[0074] Wherein, the occupant monitoring module 44 includes a plurality of camera components, and the plurality of camera components are respectively arranged at different positions in the vehicle passenger compartment.

[0075] Exemplarily, the occupant monitoring module 44 is installed in the vehicle passenger compartment, and the occupant monitoring module 44 includes a plurality of camera components whose detection ranges cover the passenger compartment and at least partially overlap.

[0076] In one example, in this embodiment, the occupant monitoring module 44 may be an Occupancy Monitoring System (OMS) for detecting and monitoring the status of passengers in the vehicle.

[0077] In a feasible implementation, in addition to multiple camera components, the occupant monitoring module 44 may further include components such as a millimeter-wave radar and an infrared fill light.

[0078] In this embodiment, through the collision receiving module 11, the occupant monitoring module 44, the Bluetooth module 13, and the connection relationships among the collision receiving module 11, the occupant monitoring module 44, and the Bluetooth module 13, when the vehicle collides, the proximal device 14 can obtain the images of the vehicle occupants in the passenger compartment and further send the images of the vehicle occupants in the passenger compartment to the terminal device of the emergency contact person, enabling the emergency contact person to know the status of the occupants, thus facilitating the emergency contact person to adopt reasonable rescue methods and improving the rescue efficiency.

[0079] In some embodiments, the vehicle emergency contact system further includes a collision protection module 45, and the collision receiving module 11 is connected to the collision protection module 45.

[0080] The collision protection module 45 is used to activate the collision protection function when receiving a vehicle collision signal.

[0081] In this embodiment, the collision protection module 45 may be an in-vehicle airbag, which is composed of components such as a gas generator, an airbag assembly, a warning light, a housing, and an ignition circuit. These hardware components work together to ensure that the airbag can be deployed quickly and effectively in the event of a severe collision, maximizing the safety of the vehicle occupants.

[0082] Among them, the airbag assembly is the actual deployed airbag itself, usually installed on the seat or other positions inside the vehicle to provide additional protection during a collision; the ignition circuit is used to ignite the chemical substances in the gas generator to generate gas to fill the airbag. When the collision protection function is activated in this embodiment, the gas generator will quickly generate a large amount of gas to fill the airbag, thereby protecting the occupants from the direct impact of vehicle components such as the steering wheel, dashboard, or windshield. The warning light and the housing are used to indicate the status of the airbag and provide additional protection in some cases.

[0083] In this embodiment, through the collision receiving module 11 and the collision protection module 45, and the connection relationships between the collision receiving module 11 and the collision protection module 45, when the vehicle collides, the collision protection function can be activated in a timely manner, maximizing the safety of the occupants.

[0084] Corresponding to the above vehicle emergency communication system, an embodiment of the present invention further provides a vehicle, including any one of the above vehicle emergency communication systems, and having the beneficial effects of any one of the above vehicle emergency communications.

[0085] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention, and should all be included in the protection scope of the present invention.

Claims

1. A vehicle emergency communication system, characterized in that, It includes a collision receiving module, an emergency contact module, a Bluetooth module, and a proximal device; the collision receiving module is connected to the emergency contact module, the emergency contact module is connected to the Bluetooth module, and the Bluetooth module is connected to the proximal device; The collision receiving module is configured to receive a vehicle collision signal sent by a vehicle controller and send the vehicle collision signal to the emergency contact module; The emergency contact module is configured to, after receiving the vehicle collision signal, send communication information of a terminal device of an emergency contact person to the proximal device through the Bluetooth module; The proximal device communicates with the terminal device of the emergency contact person through the communication information.

2. The vehicle emergency contact system according to claim 1, wherein, The vehicle collision signal is a vehicle collision intensity signal, and there are multiple emergency contact persons; The emergency contact module includes a switching unit and a sending unit. The input end of the switching unit is connected to the collision receiving module, the output end of the switching unit is connected to the input end of the sending unit, and the output end of the sending unit is connected to the Bluetooth module; The collision receiving module is configured to send the vehicle collision intensity signal to the switching unit, and the switching unit is configured to send communication information of terminal devices of at least one emergency contact person to the Bluetooth module through the sending unit.

3. The vehicle emergency communication system according to claim 2, wherein, The vehicle collision intensity signal carries the intensity of the vehicle collision; The switching unit includes a receiver and a multiplexing switching circuit. The multiplexing switching circuit consists of multiple parallel switching switches and serial interfaces; among them, one switching switch is connected to one serial interface, the conduction signal intensity of each switching switch is different, and each serial interface stores communication information of a corresponding terminal device of an emergency contact person; The input end of the receiver is connected to the collision receiving module. The receiver is configured to receive the vehicle collision intensity signal sent by the collision receiving module. The output end of the receiver is respectively connected to the input ends of each switching switch. Each switching switch is connected to the input end of a serial interface, and the output end of each serial interface is connected to the sending unit.

4. The vehicle emergency communication system according to any one of claims 1 to 3, characterized in that The vehicle emergency contact system further includes a voice module and a positioning module. The input ends of the voice module and the positioning module are respectively connected to the collision receiving module, and the output ends of the voice module and the positioning module are respectively connected to the Bluetooth module; The voice module is configured to, when receiving the vehicle collision signal, send pre-stored distress information to the proximal device through the Bluetooth module. The positioning module is configured to, when receiving the vehicle collision signal, send positioning information of the vehicle to the proximal device through the Bluetooth module. The proximal device sends the distress information and the positioning information to the terminal device of the emergency contact person.

5. The vehicle emergency contact system according to claim 4, wherein, The vehicle emergency contact system further includes a speaker, and the voice module is connected to the speaker; The voice module is further configured to, when receiving the vehicle collision signal, send the distress information to the speaker, and the speaker is configured to play the received distress information.

6. The vehicle emergency communication system according to any one of claims 1 to 3, characterized in that, The vehicle emergency contact system further includes an occupant monitoring module. The collision receiving module is connected to the occupant monitoring module, and the occupant monitoring module is connected to the Bluetooth module; The occupant monitoring module is configured to capture an image of the occupant in the vehicle occupant compartment when receiving the vehicle collision signal, and send the image to the proximal device through the Bluetooth module, and the proximal device sends the image to the terminal device of the emergency contact person.

7. The vehicle emergency communication system according to claim 6, wherein The occupant monitoring module includes a plurality of camera assemblies, and the plurality of camera assemblies are respectively disposed at different positions in the vehicle occupant compartment.

8. The vehicle emergency communication system according to any one of claims 1 to 3, characterized in that, The vehicle emergency contact system further includes a collision protection module, and the collision receiving module is connected to the collision protection module; The collision protection module is configured to activate a collision protection function when receiving the vehicle collision signal.

9. The vehicle emergency communication system according to any one of claims 1 to 3, characterized in that, The emergency contact module and the Bluetooth module are integrated into the vehicle's multimedia host.

10. A vehicle, characterized in that, Including the vehicle emergency contact system according to any one of claims 1 to 9.