Vehicle information interaction method and device, computer storage medium and vehicle
By installing electronic devices on the vehicle and establishing a communication connection with surrounding vehicles using radar data, the interaction and information transmission between vehicles are achieved, and the problem of vehicles in the prior art cannot be convenient for communication connection is solved, and the safety and fun of driving are improved.
Patent Information
- Application Number
- CN202110025182.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-01-08
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2041-01-08
AI Technical Summary
The prior art is difficult to realize convenient communication connection and interaction between vehicles and surrounding vehicles, and cannot effectively express and transmit the mood and state of the vehicle.
By installing electronic devices on the vehicle, radar data is used to obtain the presence and radar identification information of surrounding vehicles, determine the relative position relationship, and visual information transmission is carried out through the screen display image. At the same time, a communication connection is established with the neighboring vehicle based on radar identification information to realize the interaction of text, voice or video.
It realizes convenient communication connection and interaction between the vehicle and surrounding vehicles, can visually transmit the vehicle's mood and status, and improves driving safety and fun.
Smart Images

Figure CN114760612B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of vehicle technology, and in particular to a vehicle information interaction method and device, a computer storage medium and a vehicle. Background Art
[0002] As vehicles are increasingly used, users have higher and higher requirements for vehicle functions. In order to improve driving safety and fun, how vehicles communicate with surrounding cars, how to express their mood and status so that surrounding cars can understand them, and how to interact with surrounding cars have become research points of concern in the field of vehicle technology.
[0003] Therefore, a new vehicle information interaction method and device are needed. Summary of the invention
[0004] The technical problem solved by the present invention is to provide a new vehicle information interaction method and device, so that a vehicle can conveniently communicate with neighboring vehicles, thereby interacting with neighboring vehicles and realizing visual information transmission.
[0005] To solve the above technical problems, an embodiment of the present invention provides a vehicle information interaction method, which is applied to an electronic device installed on a first vehicle, and includes the following steps: acquiring radar data of the first vehicle, the radar data including the existence of neighboring vehicles of the first vehicle and radar identification information of the neighboring vehicles of the first vehicle; determining the relative position relationship between the neighboring vehicles of the first vehicle and the first vehicle based on the radar data, and controlling the screen of the electronic device to display an image corresponding to the relative position relationship, the image showing a graphic representing the neighboring vehicle and the relative position relationship between the neighboring vehicle and the first vehicle; sending a connection request to a second vehicle based on the radar data, the second vehicle being selected from the neighboring vehicles of the first vehicle; receiving a connection consent response from the second vehicle; and establishing a communication connection with the second vehicle.
[0006] Optionally, the vehicle information interaction method further includes the step of uploading the radar identification information of the first vehicle and the identification information of the electronic device to a server or a cloud.
[0007] Optionally, sending a connection request to the second vehicle based on the radar data includes: obtaining identification information of an electronic device installed on the second vehicle from the server or the cloud based on radar identification information of the second vehicle; and sending a connection request to the second vehicle based on the identification information of the electronic device installed on the second vehicle.
[0008] Optionally, sending the connection request to the second vehicle includes: sending a first command to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to the electronic device installed on the second vehicle.
[0009] Optionally, sending a connection request to the second vehicle includes: sending a first command to a first mobile terminal that is communicatively connected to the first vehicle, the first command instructing the first mobile terminal to send the connection request to a second mobile terminal connected to the electronic device installed on the second vehicle.
[0010] Optionally, receiving a connection consent response from the second vehicle includes: receiving the connection consent response from the second vehicle forwarded by the first mobile terminal.
[0011] Optionally, the connection consent response comes from the electronic device installed in the second vehicle.
[0012] Optionally, the connection consent response comes from a second mobile terminal connected to the electronic device installed on the second vehicle.
[0013] Optionally, the vehicle information interaction method further includes the steps of: receiving a second command from a user, sending content corresponding to the second command to the second vehicle, and controlling the display of the content corresponding to the second command on the image.
[0014] Optionally, after establishing a communication connection with the second vehicle and before receiving a second command from the user, the vehicle information interaction method further includes the step of adding a sign corresponding to the first vehicle and a sign corresponding to the second vehicle to the image.
[0015] Optionally, the user's second command includes: the user clicks on the sign corresponding to the first vehicle on the image and enters text; and / or the user clicks on the sign corresponding to the second vehicle on the image and enters text, or inputs voice based on a microphone installed on the first vehicle, or conducts video communication with the user of the second vehicle based on a camera installed on the first vehicle.
[0016] Optionally, the vehicle information interaction method further includes the steps of: receiving a connection request from a third vehicle, wherein the third vehicle is selected from a neighboring vehicle of the first vehicle; sending a connection consent response to the third vehicle; and establishing a communication connection with the third vehicle.
[0017] Optionally, the vehicle information interaction method further includes the steps of: sending connection requests to multiple neighboring vehicles based on the radar data; receiving connection consent responses from the multiple neighboring vehicles; and establishing communication connections with the multiple neighboring vehicles respectively.
[0018] Optionally, after establishing communication connections with the multiple neighboring vehicles respectively, the vehicle information interaction method also includes the steps of: adding a sign corresponding to the first vehicle and a plurality of signs corresponding to the multiple neighboring vehicles respectively on the image; receiving a third command from the user, the third command including the user clicking on the multiple signs on the image corresponding to the multiple neighboring vehicles respectively, and inputting text, or inputting voice based on a microphone installed on the first vehicle, or conducting video communication with users of the multiple neighboring vehicles based on a camera installed on the first vehicle; and sending content corresponding to the third command to the multiple neighboring vehicles, and controlling the display of the content corresponding to the third command on the image.
[0019] An embodiment of the present invention also provides a vehicle information interaction device, which is applied to a first vehicle and includes: an acquisition unit, used to acquire radar data of the first vehicle, the radar data including the existence of neighboring vehicles of the first vehicle and radar identification information of the neighboring vehicles of the first vehicle; a processing unit, used to determine the relative position relationship between the neighboring vehicles of the first vehicle and the first vehicle based on the radar data, and control the screen of the first vehicle to display an image corresponding to the relative position relationship, the image showing a graphic representing the neighboring vehicle and the relative position relationship between the neighboring vehicle and the first vehicle; a first sending unit, used to send a connection request to a second vehicle based on the radar data, the second vehicle being selected from the neighboring vehicles of the first vehicle; a first receiving unit, used to receive a connection consent response from the second vehicle; and a first communication unit, used to establish a communication connection with the second vehicle.
[0020] Optionally, the vehicle information interaction device further includes a second sending unit, configured to upload the radar identification information of the first vehicle and the identification information of the vehicle information interaction device to a server or a cloud.
[0021] Optionally, the first sending unit includes: an acquisition subunit, used to acquire identification information of an electronic device installed on the second vehicle from the server or the cloud based on the radar identification information of the second vehicle; and a sending subunit, used to send a connection request to the second vehicle based on the identification information of the electronic device installed on the second vehicle.
[0022] Optionally, the sending subunit is further used to: send a first command to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to the electronic device installed on the second vehicle.
[0023] Optionally, the sending subunit is further used to: send a first command to a first mobile terminal that is communicatively connected to the first vehicle, the first command instructing the first mobile terminal to send the connection request to a second mobile terminal that is connected to the electronic device installed on the second vehicle.
[0024] Optionally, the first receiving unit is further used to: receive the connection consent response from the second vehicle forwarded by the first mobile terminal.
[0025] Optionally, the connection consent response comes from the electronic device installed in the second vehicle.
[0026] Optionally, the connection consent response comes from a second mobile terminal connected to the electronic device installed on the second vehicle.
[0027] Optionally, the vehicle information interaction device also includes: a second receiving unit for receiving a second command from a user; and a third sending unit for sending content corresponding to the second command to the second vehicle and controlling the display of the content corresponding to the second command on the image.
[0028] Optionally, the processing unit is also used to add a sign corresponding to the first vehicle and a sign corresponding to the second vehicle to the image after the first communication unit establishes a communication connection with the second vehicle and before the second receiving unit receives a second command from the user.
[0029] Optionally, the user's second command includes: the user clicks on the sign corresponding to the first vehicle on the image and enters text; and / or the user clicks on the sign corresponding to the second vehicle on the image and enters text, or inputs voice based on a microphone installed on the first vehicle, or conducts video communication with the user of the second vehicle based on a camera installed on the first vehicle.
[0030] Optionally, the vehicle information interaction device also includes: a third receiving unit, used to receive a connection request from a third vehicle, wherein the third vehicle is selected from a neighboring vehicle of the first vehicle; a fourth sending unit, used to send a connection consent response to the third vehicle; and a second communication unit, used to establish a communication connection with the third vehicle.
[0031] Optionally, the first sending unit is also used to send connection requests to multiple neighboring vehicles based on the radar data; the first receiving unit is also used to receive connection consent responses from the multiple neighboring vehicles; and the first communication unit is also used to establish communication connections with the multiple neighboring vehicles respectively.
[0032] Optionally, the processing unit is also used to: add a sign corresponding to the first vehicle and a plurality of signs corresponding to the plurality of neighboring vehicles on the image after the first communication unit establishes communication connections with the plurality of neighboring vehicles respectively; the vehicle information interaction device also includes: a fourth receiving unit, used to receive a third command from the user, the third command including the user clicking on the plurality of signs on the image corresponding to the plurality of neighboring vehicles respectively, and inputting text, or inputting voice based on a microphone installed on the first vehicle, or conducting video communication with the users of the plurality of neighboring vehicles based on a camera installed on the first vehicle; and a fifth sending unit, used to send content corresponding to the third command to the plurality of neighboring vehicles, and control the display of the content corresponding to the third command on the image.
[0033] An embodiment of the present invention further provides a computer storage medium on which computer instructions are stored. When the computer instructions are executed, the steps of any of the above-mentioned vehicle information interaction methods are executed.
[0034] An embodiment of the present invention further provides a vehicle, comprising: any of the above-mentioned vehicle information interaction devices; and a radar disposed on at least one of a roof and a bottom of the vehicle.
[0035] The vehicle information interaction method provided in an embodiment of the present invention enables a first vehicle to conveniently establish a communication connection with a neighboring vehicle based on radar data and by using an electronic device installed thereon, thereby interacting with the neighboring vehicle based on the communication connection, expressing one's own mood or status, realizing visual information transmission, and improving driving safety and fun. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 is a flow chart of a vehicle information interaction method provided by an embodiment of the present invention;
[0037] Figure 2 shows an image displayed on a screen of an electronic device in an embodiment of the present invention; and
[0038] Figure 3 It is a structural schematic diagram of a vehicle information interaction device provided by an embodiment of the present invention. DETAILED DESCRIPTION
[0039] In order to improve driving safety and fun, the embodiments of the present invention provide a new vehicle information interaction method and device, so that the vehicle can communicate with surrounding vehicles, thereby expressing its mood and status, interacting with surrounding vehicles, and realizing visual information transmission.
[0040] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0041] refer to Figure 1 , Figure 1 The figure is a flow chart of a vehicle information interaction method provided by the present invention. The vehicle information interaction method can be applied to an electronic device installed on a first vehicle. Figure 1 The method shown may include the following steps:
[0042] Step S101: acquiring radar data of the first vehicle, wherein the radar data includes the existence of neighboring vehicles of the first vehicle and radar identification information of the neighboring vehicles of the first vehicle;
[0043] Step S102: determining a relative positional relationship between a neighboring vehicle of the first vehicle and the first vehicle based on the radar data, and controlling a screen of the electronic device to display an image corresponding to the relative positional relationship, wherein the image shows a graphic representing the neighboring vehicle and the relative positional relationship between the neighboring vehicle and the first vehicle;
[0044] Step S103: Based on the radar data, sending a connection request to a second vehicle, where the second vehicle is selected from a neighboring vehicle of the first vehicle;
[0045] Step S104: receiving a connection consent response from the second vehicle;
[0046] Step S105: Establishing a communication connection with the second vehicle.
[0047] The first vehicle is equipped with a radar, which detects surrounding vehicles in real time. The radar may be a laser radar, an ultrasonic radar, a microwave radar, etc. Generally, radar is used to detect obstacles, predict collisions, and perform adaptive cruise control. However, in the embodiment of the present invention, radar data is used to identify surrounding vehicles, thereby establishing communication connections with surrounding vehicles.
[0048] In the specific implementation of step S101, the electronic device installed on the first vehicle processes the relevant data based on the detection result of the radar of the first vehicle to know which vehicles exist around and their corresponding radar identification information. The radar identification information can be the code of the radar. The radar of each vehicle has a unique radar code, which provides the possibility of identifying the vehicle.
[0049] In the specific implementation of step S102, based on the result of step S101, the electronic device can determine the relative position relationship between the first vehicle and its neighboring vehicle, that is, determine the position of the neighboring vehicle in front, behind, left or right of the first vehicle, and control the screen of the electronic device to display the corresponding image, so that the user can understand the status of the neighboring vehicle at a glance.
[0050] Figure 2 FIG. 2 shows an image displayed on a screen of an electronic device according to an embodiment of the present invention. Figure 2 , the blue vehicle is the first vehicle, and the other vehicles are the current neighboring vehicles of the first vehicle. Based on this image, the relative positional relationship between the neighboring vehicles of the first vehicle and the first vehicle can be clearly seen.
[0051] In some embodiments, the electronic device uploads its own identification information and the radar identification information of the first vehicle to a server or cloud. Similarly, the electronic device installed in the neighboring vehicle may also upload its identification information and the radar identification information of the neighboring vehicle to the server or cloud. Based on this, the server or cloud stores the identification information of the electronic device installed on the vehicle and the radar identification information of the corresponding vehicle, thereby establishing a mapping between the identification information of the electronic device and the radar identification information, so that the vehicle can obtain the identification information of the electronic device on the neighboring vehicle based on the radar identification information of the neighboring vehicle. The identification information of the electronic device may be the user name (ID) registered by the user of the electronic device on the application (app) corresponding to the technical solution of the present invention. Each user of the vehicle must register before using the app, and then the server or cloud generates a registration table. When the server or cloud receives a request from the electronic device, it can query the registration table based on the radar identification information to obtain the corresponding registration ID and send it to the requesting electronic device.
[0052] In the specific implementation of step S103, the electronic device obtains the identification information of the electronic device installed on the second vehicle from the server or the cloud based on the radar identification information of the neighboring vehicle obtained in step S101, including the radar identification information of the second vehicle. Specifically, the electronic device on the first vehicle can send a corresponding request to the server or the cloud to obtain the information. Furthermore, based on the obtained identification information of the electronic device installed on the second vehicle, a connection request is sent to the second vehicle.
[0053] In some embodiments, sending a connection request to the second vehicle may include: sending a first command to a first mobile terminal that is communicatively connected to the first vehicle, the first command instructing the first mobile terminal to send the connection request to the electronic device installed on the second vehicle. In other embodiments, sending a connection request to the second vehicle may also include: sending a first command to a first mobile terminal that is communicatively connected to the first vehicle, the first command instructing the first mobile terminal to send the connection request to a second mobile terminal connected to the electronic device installed on the second vehicle.
[0054] The first mobile terminal may be a mobile terminal of a user of the first vehicle, such as a mobile phone, a notebook, a tablet computer, etc. The electronic device on the first vehicle may be connected to the first mobile terminal via a communication method such as WiFi, Bluetooth, USB, NFC, etc., and correspondingly, the electronic device on the second vehicle may be connected to the second mobile terminal via a similar communication method.
[0055] In the specific implementation of step S104, the receiving of the connection consent response from the second vehicle may include: receiving the connection consent response from the second vehicle forwarded by the first mobile terminal. Accordingly, the connection consent response may be sent by the electronic device installed on the second vehicle, or by the second mobile terminal connected to the electronic device installed on the second vehicle.
[0056] After receiving the connection consent response from the second vehicle, in step S105, the first vehicle realizes the communication connection with the second vehicle.
[0057] Based on the above steps S101 to S105, the electronic device installed on the first vehicle uses the radar data of the first vehicle to establish a communication connection between the first vehicle and its neighboring second vehicle. After the communication connection is established, the first vehicle can interact with the second vehicle to know the other party's mood or status.
[0058] In some embodiments, the vehicle information interaction method further includes the step of adding a sign corresponding to the first vehicle and a sign corresponding to the second vehicle on the image. For example, an avatar or a dialog box may be added next to the corresponding vehicle, and if the user wants to interact with a vehicle, the user may click on the corresponding avatar or dialog box to trigger communication.
[0059] In some embodiments, the vehicle information interaction method further includes the steps of: receiving a second command from a user, sending content corresponding to the second command to the second vehicle, and controlling the display of the content corresponding to the second command on the image. Specifically, the second command of the user includes: the user clicks on the sign corresponding to the first vehicle on the image and enters text; and / or the user clicks on the sign corresponding to the second vehicle on the image and enters text, or inputs voice based on a microphone installed on the first vehicle, or conducts video with a user of the second vehicle based on a camera installed on the first vehicle.
[0060] Continue to refer Figure 2 , the vehicle can enter the corresponding text, which will be displayed on the screen of the electronic device to inform the surrounding vehicles of its destination, or inform the user of the current status or needs, or notify the surrounding riders of the relevant road conditions, or send invitations or requests for help to the surrounding vehicles to improve the fun and safety of the driving process. Optionally, the vehicle can also click on the corresponding sign of the corresponding vehicle to send a voice or video request to it. If the other vehicle accepts, a voice or video call can be made.
[0061] In some embodiments, the vehicle information interaction method may further include the step of disconnecting the communication connection with the second vehicle. For example, when the user on the first vehicle does not want to be disturbed, the user may disconnect the communication connection with the second vehicle through the electronic device.
[0062] In some embodiments, the vehicle information interaction method may further include the steps of: sending a connection request to multiple neighboring vehicles based on the radar data; receiving connection consent responses from the multiple neighboring vehicles; and establishing communication connections with the multiple neighboring vehicles respectively. After establishing communication connections with the multiple neighboring vehicles respectively, the method may further include the steps of: adding a sign corresponding to the first vehicle and multiple signs corresponding to the multiple neighboring vehicles respectively on the image; receiving a third command from the user, the third command including the user clicking on the multiple signs corresponding to the multiple neighboring vehicles respectively on the image, and inputting text, or inputting voice based on the microphone installed on the first vehicle, or conducting video with the users of the multiple neighboring vehicles based on the camera installed on the first vehicle; and sending the content corresponding to the third command to the multiple neighboring vehicles, and controlling the display of the content corresponding to the third command on the image. Based on this, the user of the first vehicle can realize group voice, group video, etc. with multiple vehicle users.
[0063] Accordingly, the first vehicle can not only actively initiate a communication connection, but also receive a connection request from a neighboring vehicle. For example, in some embodiments, the vehicle information interaction method may further include the steps of: receiving a connection request from a third vehicle, the third vehicle being selected from a neighboring vehicle of the first vehicle; sending a connection consent response to the third vehicle; and establishing a communication connection with the third vehicle. Similarly, after the communication connection is established, the first vehicle or the third vehicle can send or receive messages through the screen of the corresponding electronic device.
[0064] In summary, the vehicle information interaction method provided in the embodiment of the present invention enables the first vehicle to conveniently establish a communication connection with the neighboring vehicle based on radar data and by using the electronic device installed thereon, thereby interacting with the neighboring vehicle based on the communication connection, expressing one's own mood or status, realizing visual information transmission, and improving driving safety and fun.
[0065] Correspondingly, an embodiment of the present invention further provides a vehicle information interaction device, which is applied to a first vehicle, for example, an electronic device installed on the first vehicle. Figure 3 3 is a schematic diagram of the structure of the vehicle information interaction device 30.
[0066] refer to Figure 3 The vehicle information interaction device 30 includes: an acquisition unit 301, used to acquire radar data of the first vehicle, the radar data including the existence of neighboring vehicles of the first vehicle and radar identification information of the neighboring vehicles of the first vehicle; a processing unit 302, used to determine the relative position relationship between the neighboring vehicles of the first vehicle and the first vehicle based on the radar data, and control the screen of the first vehicle to display an image corresponding to the relative position relationship, the image showing a graphic representing the neighboring vehicle and the relative position relationship between the neighboring vehicle and the first vehicle; a first sending unit 303, used to send a connection request to a second vehicle based on the radar data, the second vehicle being selected from the neighboring vehicles of the first vehicle; a first receiving unit 304, used to receive a connection consent response from the second vehicle; and a first communication unit 305, used to establish a communication connection with the second vehicle.
[0067] In some embodiments, the vehicle information interaction device 30 may further include a second sending unit (not shown) for uploading the radar identification information of the first vehicle and the identification information of the vehicle information interaction device 30 to a server or a cloud.
[0068] In some embodiments, the first sending unit 303 includes: an acquisition subunit (not shown) for acquiring identification information of the electronic device installed on the second vehicle from the server or the cloud based on the radar identification information of the second vehicle; and a sending subunit (not shown) for sending a connection request to the second vehicle based on the identification information of the electronic device installed on the second vehicle.
[0069] In some embodiments, the sending subunit is further used to: send a first command to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to the electronic device installed on the second vehicle.
[0070] In some embodiments, the sending subunit is further used to: send a first command to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to a second mobile terminal that is connected to the electronic device installed on the second vehicle.
[0071] In some embodiments, the first receiving unit 304 is further used to: receive the connection consent response from the second vehicle forwarded by the first mobile terminal.
[0072] In some embodiments, the connection consent response comes from the electronic device installed in the second vehicle.
[0073] In some embodiments, the connection consent response comes from a second mobile terminal connected to the electronic device installed in the second vehicle.
[0074] In some embodiments, the vehicle information interaction device also includes: a second receiving unit (not shown) for receiving a second command from a user; and a third sending unit for sending content corresponding to the second command to the second vehicle and controlling the display of the content corresponding to the second command on the image.
[0075] In some embodiments, the processing unit 302 is also used to add a sign corresponding to the first vehicle and a sign corresponding to the second vehicle to the image after the first communication unit 305 establishes a communication connection with the second vehicle and before the second receiving unit receives a second command from the user.
[0076] In some embodiments, the user's second command includes: the user clicks on the sign corresponding to the first vehicle on the image and enters text; and / or the user clicks on the sign corresponding to the second vehicle on the image and enters text, or inputs voice based on a microphone installed on the first vehicle, or conducts video communication with the user of the second vehicle based on a camera installed on the first vehicle.
[0077] In some embodiments, the vehicle information interaction device also includes: a third receiving unit (not shown) for receiving a connection request from a third vehicle, wherein the third vehicle is selected from a neighboring vehicle of the first vehicle; a fourth sending unit (not shown) for sending a connection consent response to the third vehicle; and a second communication unit (not shown) for establishing a communication connection with the third vehicle.
[0078] In some embodiments, the first sending unit 303 is further used to send connection requests to multiple neighboring vehicles based on the radar data; the first receiving unit 304 is further used to receive connection consent responses from the multiple neighboring vehicles; and the first communication unit 305 is further used to establish communication connections with the multiple neighboring vehicles respectively.
[0079] In some embodiments, the processing unit 302 is also used to: add a sign corresponding to the first vehicle and a plurality of signs corresponding to the plurality of neighboring vehicles on the image after the first communication unit 305 establishes communication connections with the plurality of neighboring vehicles respectively; the vehicle information interaction device also includes: a fourth receiving unit (not shown) for receiving a third command from the user, the third command including the user clicking on the plurality of signs on the image corresponding to the plurality of neighboring vehicles respectively, and inputting text, or inputting voice based on a microphone installed on the first vehicle, or conducting video communication with the users of the plurality of neighboring vehicles based on a camera installed on the first vehicle; and a fifth sending unit (not shown) for sending content corresponding to the third command to the plurality of neighboring vehicles, and controlling the display of the content corresponding to the third command on the image.
[0080] For more information about the working principle and working method of the vehicle information interaction device 30, please refer to Figure 1 The relevant description of the embodiments shown in will not be repeated here.
[0081] The embodiment of the present invention further provides a computer storage medium on which computer instructions are stored, and when the computer instructions are executed, the steps of the above-mentioned vehicle information interaction method are executed. The storage medium may include ROM, RAM, magnetic disk or optical disk, etc. The storage medium may also include non-volatile memory or non-transitory memory, etc.
[0082] The embodiment of the present invention further provides a vehicle, comprising: the above-mentioned vehicle information interaction device; and a radar arranged on at least one of the roof and the bottom of the vehicle. In some embodiments, the roof is provided with a radar, or the bottom of the vehicle is provided with a radar, or both the roof and the bottom of the vehicle are provided with radars. In some embodiments, radars are also provided in the front, back, left and right directions of the vehicle body. By arranging radars on the top and / or bottom of the vehicle, the embodiment of the present invention can sense relevant information of neighboring vehicles at different heights, for example, information of vehicles located on different floors of an elevated road, so that it is possible to interact not only with neighboring vehicles at the same height, but also with neighboring vehicles at different heights.
[0083] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the scope defined by the claims.
Claims
1. A vehicle information interaction method, applied to an electronic device installed on a first vehicle, characterized in that: The following steps are involved: Acquire radar data of the first vehicle, the radar data including the existence of neighboring vehicles of the first vehicle and radar identification information of the neighboring vehicles of the first vehicle; Determining a relative positional relationship between a neighboring vehicle of the first vehicle and the first vehicle based on the radar data, and controlling a screen of the electronic device to display an image corresponding to the relative positional relationship, the image showing a graphic representing the neighboring vehicle and the relative positional relationship between the neighboring vehicle and the first vehicle; Based on the radar identification information of the second vehicle, acquiring identification information of the electronic device installed on the second vehicle from the server, where the second vehicle is selected from an adjacent vehicle of the first vehicle, and the identification information of the electronic device installed on the vehicle and the radar identification information of the corresponding vehicle are stored on the server; sending a connection request to the second vehicle based on identification information of the electronic device installed on the second vehicle; receiving a connection consent response from the second vehicle; establishing a communication connection with the second vehicle, and adding a mark corresponding to the first vehicle and a mark corresponding to the second vehicle to the image; receiving a second command from a user, sending content corresponding to the second command to the second vehicle, and controlling display of the content corresponding to the second command on the image, wherein the second command from the user is generated based on the following method: The user clicks on the logo corresponding to the first vehicle on the image and enters text; and / or The user clicks on the sign corresponding to the second vehicle on the image and inputs text, or inputs voice based on the microphone installed on the first vehicle, or conducts video communication with the user of the second vehicle based on the camera installed on the first vehicle.
2. The vehicle information interaction method according to claim 1 further comprises the step of uploading the radar identification information of the first vehicle and the identification information of the electronic device to a server or a cloud.
3. The vehicle information interaction method according to claim 1, wherein: The sending a connection request to the second vehicle comprises: A first command is sent to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to the electronic device installed on the second vehicle.
4. The vehicle information interaction method according to claim 1, wherein: The sending a connection request to the second vehicle comprises: A first command is sent to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to a second mobile terminal that is connected to the electronic device installed on the second vehicle.
5. The vehicle information interaction method according to claim 3 or 4, wherein: The receiving a connection consent response from the second vehicle comprises: Receive the connection consent response from the second vehicle forwarded by the first mobile terminal.
6. The vehicle information interaction method according to claim 5, wherein: The connection consent response comes from the electronic device installed in the second vehicle.
7. The vehicle information interaction method according to claim 5, wherein: The connection consent response comes from a second mobile terminal connected to the electronic device installed in the second vehicle.
8. The vehicle information interaction method according to claim 1 further comprises the steps of: receiving a connection request from a third vehicle, the third vehicle being selected from a neighboring vehicle of the first vehicle; sending a connection consent response to the third vehicle; and A communication link is established with the third vehicle.
9. The vehicle information interaction method according to claim 1 further comprises the steps of: Based on the radar data, sending connection requests to multiple neighboring vehicles; Receiving connection consent responses from the plurality of neighboring vehicles; Establish communication connections with the plurality of neighboring vehicles respectively.
10. The vehicle information interaction method according to claim 9, after establishing communication connections with the plurality of neighboring vehicles respectively, the method further comprises the steps of: adding, on the image, a mark corresponding to the first vehicle and a plurality of marks respectively corresponding to the plurality of neighboring vehicles; receiving a third command from the user, the third command comprising the user clicking on the multiple signs on the image corresponding to the multiple neighboring vehicles respectively and inputting text, or inputting voice based on a microphone installed on the first vehicle, or conducting video communication with the users of the multiple neighboring vehicles based on a camera installed on the first vehicle; as well as The content corresponding to the third command is sent to the plurality of neighboring vehicles, and the content corresponding to the third command is controlled to be displayed on the image.
11. A vehicle information interaction device, applied to a first vehicle, characterized in that: include: an acquisition unit, configured to acquire radar data of the first vehicle, wherein the radar data includes the existence of a neighboring vehicle of the first vehicle and radar identification information of the neighboring vehicle of the first vehicle; a processing unit, configured to determine a relative positional relationship between a neighboring vehicle of the first vehicle and the first vehicle based on the radar data, and control a screen of the first vehicle to display an image corresponding to the relative positional relationship, the image showing a graphic representing the neighboring vehicle and the relative positional relationship between the neighboring vehicle and the first vehicle; A first sending unit, configured to send a connection request to a second vehicle based on the radar data, where the second vehicle is selected from a neighboring vehicle of the first vehicle; A first receiving unit, configured to receive a connection consent response from the second vehicle; as well as a first communication unit, configured to establish a communication connection with the second vehicle; Wherein, the first sending unit includes: an acquisition subunit, configured to acquire identification information of an electronic device installed on the second vehicle from the server or the cloud based on the radar identification information of the second vehicle, wherein the server stores identification information of the electronic device installed on the vehicle and radar identification information of the corresponding vehicle; and a sending subunit, configured to send a connection request to the second vehicle based on identification information of the electronic device installed on the second vehicle; The processing unit is further configured to: add a mark corresponding to the first vehicle and a mark corresponding to the second vehicle to the image after the first communication unit establishes a communication connection with the second vehicle and before the second receiving unit receives a second command from the user; A second receiving unit, configured to receive a second command from a user; a third sending unit, configured to send the content corresponding to the second command to the second vehicle, and control the display of the content corresponding to the second command on the image; The second command of the user is generated based on the following method: The user clicks on the logo corresponding to the first vehicle on the image and enters text; and / or The user clicks on the sign corresponding to the second vehicle on the image and inputs text, or inputs voice based on the microphone installed on the first vehicle, or conducts video communication with the user of the second vehicle based on the camera installed on the first vehicle.
12. The vehicle information interaction device according to claim 11, further comprising a second sending unit, configured to upload the radar identification information of the first vehicle and the identification information of the vehicle information interaction device to a server or a cloud.
13. The vehicle information interaction device according to claim 11, wherein: The sending subunit is further used for: A first command is sent to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to the electronic device installed on the second vehicle.
14. The vehicle information interaction device according to claim 11, wherein: The sending subunit is further used for: A first command is sent to a first mobile terminal that is communicatively connected to the first vehicle, wherein the first command instructs the first mobile terminal to send the connection request to a second mobile terminal that is connected to the electronic device installed on the second vehicle.
15. The vehicle information interaction device according to claim 13 or 14, wherein: The first receiving unit is further configured to: Receive the connection consent response from the second vehicle forwarded by the first mobile terminal.
16. The vehicle information interaction device according to claim 15, wherein: The connection consent response comes from the electronic device installed in the second vehicle.
17. The vehicle information interaction device according to claim 15, wherein: The connection consent response comes from a second mobile terminal connected to the electronic device installed in the second vehicle.
18. The vehicle information interaction device according to claim 11, further comprising: A third receiving unit, configured to receive a connection request from a third vehicle, wherein the third vehicle is selected from an adjacent vehicle of the first vehicle; A fourth sending unit, configured to send a connection consent response to the third vehicle; as well as The second communication unit is used to establish a communication connection with the third vehicle.
19. The vehicle information interaction device according to claim 11, wherein: The first sending unit is further used to send connection requests to multiple neighboring vehicles based on the radar data; The first receiving unit is further configured to receive connection consent responses from the plurality of neighboring vehicles; The first communication unit is further configured to establish communication connections with the plurality of neighboring vehicles respectively.
20. The vehicle information interaction device according to claim 19, wherein: The processing unit is further configured to: add a mark corresponding to the first vehicle and a plurality of marks corresponding to the plurality of neighboring vehicles respectively on the image after the first communication unit establishes communication connections with the plurality of neighboring vehicles respectively; The vehicle information interaction device also includes: a fourth receiving unit, configured to receive a third command from the user, wherein the third command includes the user clicking on the multiple signs on the image corresponding to the multiple neighboring vehicles respectively and inputting text, or inputting voice based on a microphone installed on the first vehicle, or conducting video communication with users of the multiple neighboring vehicles based on a camera installed on the first vehicle; as well as The fifth sending unit is used to send the content corresponding to the third command to the multiple neighboring vehicles, and control the display of the content corresponding to the third command on the image.
21. A computer storage medium having computer instructions stored thereon, characterized in that: When the computer instructions are executed, the steps of the vehicle information interaction method according to any one of claims 1 to 10 are executed.
22. A vehicle, characterized in that: include: The vehicle information interaction device according to any one of claims 11 to 20; as well as A radar is installed on at least one of the roof and the bottom of the vehicle.
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