Server device, information and communication system, information and communication method, and program
The server device facilitates vehicle identification and communication by receiving and processing selection criteria, enabling high-capacity data exchange through Uu communication with vehicles that meet specified conditions.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- NEC CORP
- Filing Date
- 2022-01-17
- Publication Date
- 2026-04-14
AI Technical Summary
Existing vehicle-to-vehicle communication technologies, such as LTE-V2X and 5G, struggle with identifying suitable vehicles for large-capacity data communication without prior knowledge of connection destination information, leading to potential failures in identifying vehicles that meet desired conditions.
A server device that receives a communication request message specifying selection criteria, selects a suitable vehicle using wireless communication, and transmits a communication request message to that vehicle, enabling high-capacity data communication through Uu communication by identifying vehicles that meet the specified conditions.
Enables effective communication with vehicles that meet desired conditions, allowing large-capacity data exchange, such as video information, by utilizing Uu communication.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a server device, an information communication system, an information communication method, and a program.
Background Art
[0002] In recent years, vehicle-to-vehicle communication (V2V) and vehicle-to-infrastructure communication (V2I) have been spreading, and various data are being exchanged using V2X (Vehicle to Everything) communication technology. However, in the PC5 communication of LTE-V2X, it is not possible to handle large-capacity data communication such as video information. Also, although large-capacity data communication is possible using Uu communication such as the fifth-generation mobile communication system (5G), communication cannot be performed unless information for identifying the other vehicle, for example, connection destination information, is known.
[0003] Patent Document 1 discloses that a management device transmits information such as a traffic jam occurrence section, position information of in-vehicle devices existing in the traffic jam occurrence section, and network addresses to an in-vehicle device of a vehicle. Then, the in-vehicle device of the vehicle selects a candidate camera that is a candidate for distributing camera video based on the position information acquired from the management device.
[0004] Also, Patent Document 2 discloses selecting, from a plurality of vehicles, a vehicle currently located near a position where a user wishes to take a photograph or a vehicle whose planned travel route overlaps with a position near where the user wishes to take a photograph.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0006] As mentioned above, in order to perform large-capacity data communication using Uu communication such as 5G, information is needed to identify the other vehicle (in-vehicle device). Patent Document 1 can transmit information such as the section where congestion occurs, the location information of in-vehicle devices located within the congestion section, and the network address to the in-vehicle device of a vehicle, but there is a possibility that it may not be possible to identify the in-vehicle device of a vehicle that meets the desired conditions.
[0007] Furthermore, while Patent Document 2 allows users to select a vehicle currently located near the desired shooting location from among multiple vehicles, similar to Patent Document 1, there is a possibility that it may not be possible to identify the in-vehicle device of a vehicle that meets the desired conditions.
[0008] One aspect of the present invention has been made in view of the above-mentioned problems, and aims to provide a technology that enables communication with a vehicle that meets desired conditions. [Means for solving the problem]
[0009] A server device according to one aspect of the present invention includes a receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, a selection means that selects a second vehicle that satisfies the selection conditions, and a transmitting means that transmits the communication request message to the second vehicle.
[0010] A server device according to one aspect of the present invention includes: receiving means for receiving a communication request message from a first vehicle using wireless communication that specifies selection conditions for selecting another vehicle; selection means for selecting a second vehicle that satisfies the selection conditions; storage means for storing in association the location information of each vehicle included in the vehicle group with the communication connection information of each vehicle in wireless communication; search means for searching for location information corresponding to the location information of the second vehicle by referring to the location information of each vehicle stored in the storage means; and transmitting means for transmitting the communication connection information corresponding to the second vehicle stored in the storage means to the first vehicle if the location information corresponding to the location information of the second vehicle is stored in the storage means.
[0011] An information communication system according to one aspect of the present invention includes: receiving means for receiving a communication request message from a first vehicle specifying selection conditions for selecting another vehicle using wireless communication; selecting means for selecting a second vehicle that satisfies the selection conditions; first transmitting means for transmitting the communication request message to the second vehicle; and second transmitting means for transmitting predetermined information possessed by the second vehicle to the first vehicle.
[0012] An information communication method according to one aspect of the present invention uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, selects a second vehicle that satisfies the selection conditions, and transmits the communication request message to the second vehicle.
[0013] A program according to one aspect of the present invention causes a computer to perform the following processes: receiving a communication request message from a first vehicle using wireless communication, specifying selection conditions for selecting another vehicle; selecting a second vehicle that satisfies the selection conditions; and transmitting the communication request message to the second vehicle. [Effects of the Invention]
[0014] According to one aspect of the present invention, it is possible to identify a vehicle that meets desired conditions and communicate with it.
Brief Description of the Drawings
[0015] [Figure 1] FIG. 1 is a diagram showing the configuration of a server device according to a first exemplary embodiment of the present invention together with an exemplary vehicle. [Figure 2] FIG. 2 is a diagram for explaining an example of selection conditions for selecting another vehicle. [Figure 3] FIG. 3 is a flowchart showing the flow of an information communication method of a server device according to a first exemplary embodiment of the present invention. [Figure 4] FIG. 4 is a block diagram showing the configuration of an information communication system according to a first exemplary embodiment of the present invention. [Figure 5] FIG. 5 is a flowchart showing the flow of an information communication method of an information communication system according to a first exemplary embodiment of the present invention. [Figure 6] FIG. 6 is a diagram showing the configuration of a server device according to a modification of a first exemplary embodiment of the present invention together with an exemplary intersection and a photographing device. [Figure 7] FIG. 7 is a diagram showing the configuration of a server device according to a second exemplary embodiment of the present invention together with an exemplary vehicle. [Figure 8] FIG. 8 is a diagram showing the configuration of an information communication system according to a third exemplary embodiment of the present invention. [Figure 9] FIG. 9 is a flowchart showing the flow of an information communication method of an information communication system according to a third exemplary embodiment of the present invention. [Figure 10] FIG. 10 is a block diagram showing the configuration of a computer functioning as a server device and an information communication system according to each exemplary embodiment.
Preferred Embodiment for Carrying Out the Invention
[0016] 〔Exemplary Embodiment 1〕 A first exemplary embodiment of the present invention will be described in detail with reference to the drawings. This exemplary embodiment is a basic form of the exemplary embodiments described later. Note that the reference numerals in the drawings appended to this overview are for convenience and are appended to each element as an example to assist understanding, and are not intended to limit the present invention to the illustrated embodiments. Also, the connection lines between blocks in the drawings and the like referred to in the following description include both bidirectional and unidirectional lines. The one-way arrows schematically show the flow of the main signal (data) and do not exclude bidirectionality. Also, each input / output connection point of each block in the figure may be configured with a port or an interface, but illustration of these configurations is omitted.
[0017] <Server device 1 according to Exemplary Embodiment 1> FIG. 1 is a diagram showing the configuration of a server device 1 according to a first exemplary embodiment of the present invention together with an exemplary vehicle. As shown in FIG. 1, the server device 1 according to this exemplary embodiment includes a receiving means 11, a selecting means 12, and a transmitting means 13. The server device 1 can be configured by a server installed on a cloud infrastructure or the Internet or the like. Also, the server device 1 may be a MEC (Multi-access Edge Computing or Mobile Edge Computing) server installed at a position close to the base station.
[0018] The receiving means 11 receives, by using wireless communication, a communication request message specifying selection conditions for selecting other vehicles from the first vehicle 31. For example, the receiving means 11 receives a communication request message from the first vehicle 31 by using C-V2X.
[0019] Both LTE's C-V2X (LTE V2X) and 5G's C-V2X (NR V2X) include two types of communication methods: direct communication (PC5 communication) and indirect communication (Uu communication). Uu communication is a method of communicating via a base station and is the same communication as that performed by a normal smartphone or the like. Note that Uu communication is unicast-type communication and may also be called V2N (Vehicle to Network) communication.
[0020] PC5 communication is a method of direct communication between vehicles or between vehicles and infrastructure, without going through a base station, and is sometimes called V2V or V2I communication. PC5 communication is generally a broadcast type of communication and is not suitable for high-capacity communication due to bandwidth and wireless protocol specifications.
[0021] One of the aims of this invention is to obtain the Uu communication address of the communication partner using PC5's broadcast communication and to perform high-capacity communication using Uu communication with the obtained communication address. Hereafter, unless otherwise specified, when "C-V2X" is written, it refers to PC5 communication.
[0022] Alternatively, instead of PC5 communication, DSRC (Dedicated Short Range Communications), a wireless LAN-based vehicle-to-vehicle communication technology, may be used. DSRC is also a broadcast-type communication; for example, specific information can be transmitted via DSRC broadcast, and communication address information for LTE / 5G Uu communication can be obtained from the target vehicle.
[0023] In C-V2X PC5 communication, communication is basically performed by broadcast communication; therefore, the first vehicle 31 performs broadcast communication specifying server device 1. Note that the transmission of a communication request message from vehicle 31 to server device 1 is not limited to C-V2X broadcast communication, but may be done by other communication methods.
[0024] Examples of data exchanged using V2X communication technology include road traffic information, data on vehicle behavior, data on platooning and follow-me driving, and data on autonomous driving. In this exemplary embodiment, among these data, data on vehicle behavior, particularly information such as the vehicle's driving area, location information, driving speed, driving distance, driving characteristics such as acceleration / deceleration and steering, and the vehicle's status, can be used.
[0025] The selection criteria are conditions for selecting another vehicle, for example, when there is a vehicle that obstructs the view of the first vehicle 31 in the direction of travel, such as a truck, and the vehicle selected is one that is further ahead than the truck.
[0026] Figure 2 illustrates an example of selection criteria for selecting another vehicle. In Figure 2, the first vehicle corresponds to vehicle A31, and the second vehicles correspond to vehicles B33 and C34. Truck 32 is located ahead of vehicle A31 in the direction of travel, and the driver of vehicle A31 has their view of the area further ahead of truck 32 obstructed. If the driver of vehicle A31 wants an image of the area in front of truck 32, the selection criterion is a vehicle that has an image of the area in front of truck 32. The driver of vehicle A31 sends a communication request message specifying the selection criterion using an in-vehicle terminal. The communication request message includes, for example, the location information of vehicle A31.
[0027] The selection means 12 selects the second vehicles 33 and 34 that satisfy the selection criteria. For example, if the communication request message received from vehicle A31 includes location information for vehicle A31, the selection means 12 can identify the truck 32 driving in front of vehicle A31 as shown in Figure 2. For example, the server device 1 can use V2X to obtain location information of vehicles located within the V2X service area. The server device 1 can also use V2X to obtain information about the type of vehicles located within the V2X service area. Therefore, the selection means 12 can identify the truck 32 obstructing the view of vehicle A31 from the location information and type of each vehicle.
[0028] Furthermore, the truck 32 that obstructs the view of vehicle A31 is not limited to the vehicle traveling directly in front of vehicle A31, but may be, for example, a truck traveling several vehicles ahead of vehicle A31. In this case, the selection means 12 selects several vehicles traveling ahead of vehicle A31 from the location information of vehicle A31 and identifies the vehicle that obstructs the view of vehicle A31 from the type of vehicle of each vehicle.
[0029] If the selection means 12 can identify truck 32, it selects vehicles B33 and C34, which are located in front of truck 32, as the second vehicle based on the location information of each vehicle present within the V2X service area. The selection means 12 may also select truck 32 as the second vehicle, as truck 32 itself may have video footage of what is in front of it.
[0030] The transmitting means 13 sends a communication request message to the second vehicles 33 and 34. The transmitting means 13, for example, specifies the second vehicles 33 and 34 and sends the communication request message using C-V2X broadcast communication. The broadcast communication will send the communication request message to all vehicles within the V2X service area, but vehicles other than the specified vehicles will discard the received communication request message.
[0031] When the in-vehicle terminals of the second vehicles, vehicle B33 and vehicle C34, receive a communication request message, if they agree to respond to the communication request message, they transmit the communication connection information of the in-vehicle terminal installed in their vehicle to the first vehicle, vehicle A31. The communication connection information may be, for example, an IP address, or any other information that can identify the communication partner; however, it is not limited to this.
[0032] The in-vehicle terminal can communicate using either the 5G (fifth-generation mobile communication system) core network or the 4G (fourth-generation mobile communication system) core network as defined by 3GPP (Third Generation Mobile Communications System Partnership Project). However, the network is not limited to these.
[0033] When the in-vehicle terminal of vehicle A31 receives communication connection information from vehicle B33 or vehicle C34, it becomes possible to communicate large amounts of data, such as video information, with vehicle B33 or vehicle C34 using a communication network such as 5G or 4G. Therefore, vehicle A31 can acquire video of what is in front of truck 32.
[0034] <Effects of Server Device 1 According to Exemplary Embodiment 1> As described above, according to the server device 1 of this exemplary embodiment, the selection means 12 selects the second vehicles 33 and 34 that satisfy the selection conditions, and the transmission means 13 sends a communication request message to the second vehicles 33 and 34. Therefore, the first vehicle 31 can specify the selection conditions for selecting other vehicles in the communication request message, thereby identifying a vehicle that meets the desired conditions and communicating with it.
[0035] <Flowchart of information communication method by server device 1> The flow of the information communication method executed by the server device 1 configured as described above will be explained with reference to Figure 3. Figure 3 is a flowchart showing the flow of the information communication method of the server device 1 according to exemplary embodiment 1 of the present invention. As shown in Figure 3, the information communication method includes steps S1 to S3.
[0036] First, the receiving means 11 receives a communication request message from the first vehicle using wireless communication, specifying selection conditions for selecting another vehicle (S1). For example, the receiving means 11 receives a communication request message from the first vehicle 31 using C-V2X.
[0037] Next, the selection means 12 selects a second vehicle that satisfies the selection criteria (S2). For example, the selection means 12 can identify a truck 32 that obstructs the view of vehicle A31 shown in Figure 2, based on the location information and vehicle type of each vehicle. The selection means 12 selects vehicles B33 and C34, which are located in front of the truck 32 shown in Figure 2, as the second vehicle.
[0038] Finally, the transmitting means 13 sends a communication request message to the second vehicle (S3). The transmitting means 13 sends the communication request message using C-V2X broadcast communication, for example, specifying the second vehicles 33 and 34.
[0039] <Effects of the information communication method of the server device 1 according to exemplary embodiment 1> As described above, according to the information communication method of the server device 1 in this exemplary embodiment, the second vehicles 33 and 34 that satisfy the selection criteria are selected, and a communication request message is sent to the second vehicles 33 and 34. Therefore, the first vehicle 31 can specify the selection criteria for selecting other vehicles in the communication request message, thereby identifying the vehicle that meets the desired conditions and communicating with it.
[0040] <Configuration of Information and Communication System 100> The configuration of the information communication system 100 according to this exemplary embodiment will be described with reference to Figure 4. Figure 4 is a block diagram showing the configuration of the information communication system 100 according to exemplary embodiment 1 of the present invention. As shown in Figure 4, the information communication system 100 includes a receiving means 21, a selection means 22, a first transmitting means 23, and a second transmitting means 24.
[0041] The receiving means 21, the selection means 22, the first transmitting means 23, and the second transmitting means 24 are configured to communicate via a network N, for example. Here, the specific configuration of the network N is not limited to this exemplary embodiment, but examples include the V2X, 5G core network, 4G core network, etc.
[0042] The receiving means 21 is located, for example, in the server device 1 described above, and uses wireless communication to receive a communication request message from the first vehicle 31 shown in Figure 2, specifying selection conditions for selecting another vehicle. For example, the receiving means 21 receives the communication request message from the first vehicle 31 shown in Figure 2 using C-V2X.
[0043] The selection means 22 is located, for example, in the server device 1 described above, and selects a second vehicle that satisfies the selection criteria. The selection means 22 can, for example, identify a truck 32 that obstructs the view of vehicle A31 shown in Figure 2, based on the location information and vehicle type of each vehicle. The selection means 22 selects vehicles B33 and C34, which are located in front of the truck 32 shown in Figure 2, as the second vehicle.
[0044] The first transmitting means 23 is located, for example, in the server device 1 described above, and transmits a communication request message to the second vehicles 33 and 34 shown in Figure 2. The first transmitting means 23 transmits the communication request message using C-V2X broadcast communication, for example, by specifying the second vehicles 33 and 34 shown in Figure 2.
[0045] The second transmission means 24 is located, for example, in the second vehicles 33 and 34 described above, and transmits predetermined information held by the second vehicles 33 and 34 to the first vehicle 31. The predetermined information held by the second vehicles 33 and 34 is communication connection information, such as an IP address. Alternatively, the predetermined information held by the second vehicles 33 and 34 may be an image captured by a camera mounted on the second vehicles 33 and 34.
[0046] The transmission of predetermined information by the second transmission means 13 may be via unicast or broadcast communication. For example, if the source IP address of the communication request message is included in the header or data portion of the communication request message, it may be sent to that IP address via unicast communication.
[0047] Furthermore, if the identifier of the communication request message is included in the header or data portion of the communication request message, it may be transmitted via broadcast communication along with information indicating that it is a response to that identifier.
[0048] <Flowchart of information and communication method using information and communication system 100> The flow of the information communication method executed by the information communication system 100 configured as described above will be explained with reference to Figure 5. Figure 5 is a flowchart showing the flow of the information communication method of the information communication system 100 according to exemplary embodiment 1 of the present invention. As shown in Figure 5, the information communication method includes steps S11 to S14.
[0049] First, the receiving means 21 receives a communication request message from the first vehicle using wireless communication, specifying selection conditions for selecting another vehicle (S11). For example, the receiving means 21 receives a communication request message from the first vehicle 31 shown in Figure 2 using C-V2X.
[0050] Next, the selection means 22 selects a second vehicle that satisfies the selection criteria (S12). The selection means 22 can, for example, identify a truck 32 that obstructs the view of vehicle A31 shown in Figure 2, based on the location information and vehicle type of each vehicle. The selection means 12 selects vehicles B33 and C34, which are located in front of the truck 32 shown in Figure 2, as the second vehicle.
[0051] Next, the first transmitting means 23 sends a communication request message to the second vehicle (S13). The first transmitting means 23 sends the communication request message using C-V2X broadcast communication, for example, specifying the second vehicles 33 and 34.
[0052] Finally, the second transmitting means 24 transmits predetermined information possessed by the second vehicles 33 and 34 to the first vehicle 31 (S14).
[0053] <Effects of the Information and Communication System 100 according to Exemplary Embodiment 1> As described above, according to the information communication system 100 of this exemplary embodiment, the selection means 22 selects the second vehicles 33 and 34 that satisfy the selection conditions, and the first transmission means 23 transmits a communication request message to the second vehicles 33 and 34. Therefore, the first vehicle 31 can specify the selection conditions for selecting other vehicles in the communication request message, thereby identifying a vehicle that meets the desired conditions and communicating with it.
[0054] [Examples of the Exemplary Embodiment 1] Modifications of the first exemplary embodiment of the present invention will be described in detail with reference to the drawings. Components having the same function as those described in Exemplary Embodiment 1 will be denoted by the same reference numerals, and their descriptions will be omitted as appropriate.
[0055] <Server device 1A according to a modified example of embodiment 1> Figure 6 shows the configuration of a server device 1A according to a modified example of the first exemplary embodiment of the present invention, together with an exemplary intersection and a camera device 40. As shown in Figure 6, the server device 1A according to this modified example comprises a receiving means 11, a selection means 12, a transmitting means 13, and a detection means 14.
[0056] The camera 40 is installed on traffic lights at intersections, etc., and provides the captured video to the server device 1A. The camera 40 may be installed in locations other than traffic lights at intersections, such as buildings near intersections or utility poles.
[0057] The receiving means 11 receives a communication request message from the first vehicle 31 using wireless communication, specifying selection conditions for selecting another vehicle. For example, the receiving means 11 receives the communication request message from the first vehicle 31 using C-V2X.
[0058] The selection criteria are conditions for selecting other vehicles, and include, for example, information such as the vehicle's license plate number, make and model, and body color. The selection criteria can be any information that describes the characteristics of the vehicle, but are not limited to these. The selection criteria are conditions for directly selecting the second vehicle shown in Figure 2, which is either car B33 or car C34.
[0059] Furthermore, lane information of the second vehicle, such as the first lane, second lane, or passing lane, may be included as a selection criterion. Alternatively, lane information may be used as another selection criterion, and the detection means 14 may select the second vehicle based on the combination of the selection criterion and the lane information.
[0060] The detection means 14 detects vehicles from images captured by the camera 40. For example, the detection means 14 inputs images from the camera 40 installed on the traffic light and performs an analysis process to detect vehicles included in the images by analyzing the images. The detection means 14 can detect vehicles using, for example, R-CNN (Regional CNN (Convolutional Neural Network)).
[0061] The detection means 14 extracts the vehicle's body color from the image of the detected vehicle. Furthermore, if the detection means 14 can detect the vehicle's make and model from the image of the detected vehicle, it detects the make and model through analysis. If the detection means 14 cannot detect the vehicle's make and model, it may use V2X information to obtain the make and model of the target vehicle.
[0062] Furthermore, the detection means 14 extracts the vehicle's license plate information from the image of the detected vehicle. Preferably, the license plate information is the information of the entire license plate, but if part of the license plate is hidden by another object, it may be information of only part of the license plate.
[0063] Furthermore, the detection means 14 can identify the location information of the detected vehicle from the location information of the camera 40. Therefore, the selection means 12 can identify which vehicle within the V2X service area the vehicle detected by the detection means 14 corresponds to by referring to the V2X information.
[0064] The selection means 12 selects a second vehicle based on whether at least one of the selection conditions matches a characteristic of a vehicle detected by the detection means 14. For example, if the communication request message received from vehicle A31 shown in Figure 2 includes the selection condition of body color, the selection means 12 selects a vehicle with a matching body color from among the vehicles detected by the detection means 14 as the second vehicle.
[0065] Furthermore, if the communication request message received from vehicle A31 shown in Figure 2 includes the vehicle type, which is a selection criterion, the selection means 12 selects a vehicle that matches the vehicle type from among the vehicles detected by the detection means 14 as the second vehicle.
[0066] Furthermore, if the communication request message received from vehicle A31 shown in Figure 2 includes license plate information, which is a selection criterion, the selection means 12 selects a vehicle from among the vehicles detected by the detection means 14 whose license plate information matches, either partially or completely, as the second vehicle.
[0067] Furthermore, the communication request message may include multiple selection criteria from among the vehicle's license plate information, vehicle type, and body color. In this case, the selection means 12 selects a vehicle that matches the multiple selection criteria from among the vehicles detected by the detection means 14 as the second vehicle.
[0068] The transmitting means 13 sends a communication request message to the second vehicle. If, for example, vehicle B33 or vehicle C34 is selected as the second vehicle, the transmitting means 13 specifies vehicle B33 or vehicle C34 and sends the communication request message using C-V2X broadcast communication.
[0069] For example, the transmitting means 13 sends a communication request message to the second vehicle, vehicle B33 or vehicle C34, instructing it to transmit sensing information (predetermined information possessed by the second vehicle) acquired by a sensing device mounted on the second vehicle, vehicle B33 or vehicle C34, to the first vehicle 31. The sensing device is, for example, a visible light camera, an infrared sensor, an ultrasonic sensor, LiDAR (Light Detection and Ranging), a millimeter-wave radar, etc. If the sensing device is an imaging device such as a visible light camera, the transmitting means 13 sends a communication request message instructing it to transmit image information captured by the imaging device to the first vehicle 31.
[0070] Furthermore, the transmitting means 13 may send a communication request message to the second vehicle, vehicle B33 or vehicle C34, instructing it to transmit communication connection information (predetermined information possessed by the second vehicle) of the second vehicle, vehicle B33 or vehicle C34, to the first vehicle 31.
[0071] Furthermore, the transmitting means 13 may transmit a communication request message to the second vehicle, vehicle B33 or vehicle C34, which includes communication connection information of the first vehicle 31 in wireless communication.
[0072] <Effects of Server Device 1A According to a Modified Example of Embodiment 1> As described above, according to the modified server device 1A, the selection means 12 selects a second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means 14. Therefore, the first vehicle 31 can identify and communicate with any vehicle by specifying the characteristics of other vehicles in a communication request message.
[0073] Furthermore, the transmitting means 13 sends a communication request message to the second vehicle, instructing it to transmit the sensing information acquired by the sensing device mounted on the second vehicle to the first vehicle 31. Therefore, even if there is a vehicle obstructing the view in front of the first vehicle 31, information regarding the area in front of the obstructing vehicle can be acquired.
[0074] Furthermore, the transmitting means 13 sends a communication request message to the second vehicle, instructing it to transmit the second vehicle's communication connection information in wireless communication to the first vehicle 31. As a result, the first vehicle 31 becomes capable of performing large-capacity data communication with the second vehicle.
[0075] Furthermore, the transmitting means 13 transmits a communication request message to the second vehicle, which includes communication connection information of the first vehicle 31 in wireless communication. Therefore, the second vehicle can communicate with the first vehicle 31 without using broadcast communication.
[0076] [Exemplary Embodiment 2] A second exemplary embodiment of the present invention will be described in detail with reference to the drawings. Components having the same function as those described in Exemplary Embodiment 1 and its modified form will be denoted by the same reference numerals, and their descriptions will be omitted as appropriate.
[0077] <Server device 1B according to exemplary embodiment 2> Figure 7 shows the configuration of a server device 1B according to a second exemplary embodiment of the present invention, together with an exemplary vehicle. As shown in Figure 7, the server device 1B according to this exemplary embodiment comprises a receiving means 11, a selection means 12, a transmitting means 13, a search means 15, and a storage means 16.
[0078] The receiving means 11 receives a communication request message from the first vehicle 31 using wireless communication, specifying selection criteria for selecting another vehicle. For example, the selection criterion is a vehicle located further ahead than a specific vehicle ahead of the first vehicle 31 in the direction of travel.
[0079] As shown in Figure 2, from the perspective of the driver of vehicle A31, truck 32, which obstructs the view, corresponds to the specific vehicle. In addition, vehicles B33 and C34 correspond to vehicles located further ahead than the specific vehicle.
[0080] The selection means 12 identifies a specific vehicle (truck 32) by referring to the position information of the first vehicle 31, and selects a vehicle located further ahead of the specific vehicle (truck 32) as the second vehicle. As described above, the server device 1 can use V2X to obtain position information of vehicles located within the V2X service area. For example, the selection means 12 can identify the direction of travel of the first vehicle 31 from the change in the position information of the first vehicle 31, and identify a vehicle with position information ahead of the direction of travel of the first vehicle 31 as the specific vehicle 32. The selection means 12 can also select a vehicle with position information further ahead of the specific vehicle 32 as the second vehicle.
[0081] Furthermore, the selection means 12 may identify the first vehicle 31 by referring to the position information of the specific vehicle (truck 32), and select vehicles located further ahead of the specific vehicle (truck 32) as the second vehicles 33 and 34. For example, the selection means 12 may identify the vehicle immediately behind the specific vehicle (truck 32) as the first vehicle 31. As an example, the selection means 12 can identify the direction of travel of the specific vehicle 32 from the change in the position information of the specific vehicle 32, and identify the vehicle having position information behind the direction of travel of the specific vehicle 32 as the first vehicle 31. Alternatively, the detection means 14 described in the modified example of embodiment 1 may identify the first vehicle 31 from an image captured by the camera 40.
[0082] The storage means 16 stores the location information of each vehicle included in the vehicle group in association with the communication connection information of each vehicle in wireless communication.
[0083] The search means 15 refers to the location information of each vehicle stored in the storage means 16 and searches for location information corresponding to the location information of the second vehicles 33 and 34.
[0084] If the storage means 16 has location information corresponding to the location information of the second vehicles 33 and 34 stored in it, the transmission means 13 transmits the communication connection information corresponding to the second vehicles 33 and 34 stored in the storage means 16 to the first vehicle 31.
[0085] Furthermore, if the storage means 16 does not contain location information corresponding to the location information of the second vehicles 33 and 34, the transmitting means 13 sends a communication request message using broadcast radio communication. In this case, the receiving means 11 receives the communication connection information of the second vehicles 33 and 34 transmitted from the second vehicles 33 and 34 to the first vehicle 31. The retrieval means 15 then associates the location information of the second vehicles 33 and 34 with the communication connection information of the vehicles 33 and 34 received by the receiving means 11 and stores it in the storage means 16.
[0086] Thus, if the storage means 16 does not store location information corresponding to the location information of the second vehicle, the search means 15 stores the location information of the second vehicle and the received communication connection information of the second vehicle in association with each other in the storage means 16. If the selection means 12 selects a second vehicle again that has the same location information, the search means 15 outputs the communication connection information corresponding to the second vehicle stored in the storage means 16 to the transmission means 13. The transmission means 13 transmits the communication connection information of the second vehicle to the first vehicle 31. Therefore, the transmission means 13 does not need to send a communication request message to the second vehicle, and processing time can be shortened.
[0087] <Effects of Server Device 1B According to Exemplary Embodiment 2> As described above, according to the server device 1B of this exemplary embodiment, the selection means 12 refers to the position information of the first vehicle 31 to identify a specific vehicle (truck 32) and selects a vehicle located further ahead than the specific vehicle (truck 32) as the second vehicle. Therefore, the selection means 12 can easily select a second vehicle that matches the selection criteria.
[0088] Furthermore, the selection means 12 identifies the first vehicle 31 by referring to the location information of the specific vehicle (truck 32), and selects a vehicle located further ahead than the specific vehicle (truck 32) as the second vehicle. Therefore, even if the communication request message does not contain information that can identify the first vehicle 31, the selection means 12 can easily identify the first vehicle 31.
[0089] Furthermore, if location information corresponding to the location information of the second vehicle is stored in the storage means 16, the transmission means 13 transmits the communication connection information corresponding to the second vehicle stored in the storage means 16 to the first vehicle 31. Therefore, the transmission means 13 does not need to send a communication request message to the second vehicle, and processing time can be shortened.
[0090] [Exemplary Embodiment 3] A third exemplary embodiment of the present invention will be described in detail with reference to the drawings. Components having the same function as those described in Exemplary Embodiment 1 will be denoted by the same reference numerals, and their descriptions will be omitted as appropriate.
[0091] <Information and communication system 100A according to exemplary embodiment 3> Figure 8 shows the configuration of an information communication system 100A according to a third exemplary embodiment of the present invention. As shown in Figure 8, the information communication system 100A according to this exemplary embodiment comprises a server device 1C, a first vehicle 31, and second vehicles 33 and 34.
[0092] Furthermore, the server device 1C includes a receiving means 21, a selection means 22, a first transmitting means 23, a detection means 25, a search means 26, and a storage means 27. The first vehicle 31, the receiving means 21, the first transmitting means 23, and the second transmitting means 24 of the second vehicles 33 and 34 are configured to communicate with each other via a network N, for example. Here, the specific configuration of the network N is not limited to this exemplary embodiment, but examples include the V2X, 5G core network, 4G core network, etc.
[0093] The receiving means 21 receives a communication request message from the first vehicle 31 using wireless communication, specifying selection conditions for selecting another vehicle. For example, the receiving means 21 receives the communication request message from the first vehicle 31 using C-V2X.
[0094] The detection means 25 detects vehicles from images captured by the camera 40. For example, the detection means 25 receives images from the camera 40 installed on a traffic light and performs an analysis process to detect vehicles included in the images by analyzing the images.
[0095] The selection means 22 selects a second vehicle that satisfies the selection criteria. For example, the selection means 22 can identify a truck 32 that obstructs the view of vehicle A31 shown in Figure 2, based on the location information and vehicle type of each vehicle. The selection means 22 selects vehicles B33 and C34, which are located in front of the truck 32 shown in Figure 2, as the second vehicle.
[0096] Furthermore, the selection means 22 may select a second vehicle based on whether at least one of the selection conditions matches a characteristic of a vehicle detected by the detection means 25. For example, if the communication request message received from vehicle A31 shown in Figure 2 includes the selection condition of body color, the selection means 22 selects a vehicle with a matching body color from among the vehicles detected by the detection means 25 as the second vehicle.
[0097] The storage means 27 stores the location information of each vehicle included in the vehicle group in association with the communication connection information of each vehicle in wireless communication.
[0098] The search means 26 searches for location information corresponding to the location information of the second vehicles 33 and 34 by referring to the location information of each vehicle stored in the storage means 27.
[0099] Location information retrieval is not limited to cases where there is a perfect match. For example, if the difference between the location information of the second vehicles 33 and 34 and the location information of each vehicle stored in the storage means 27 is less than or equal to a predetermined value, the location information may be considered to match. This predetermined value may be determined based on the speed of the second vehicles 33 and 34. Specifically, the faster the speed of the second vehicles 33 and 34, the larger the predetermined value may be set. Furthermore, the direction of movement may also be taken into consideration. This is to determine whether the direction of the error coincides with the direction of vehicle movement.
[0100] If the storage means 27 has location information corresponding to the location information of the second vehicles 33 and 34 stored in it, the first transmitting means 23 transmits the communication connection information corresponding to the second vehicles 33 and 34 stored in the storage means 27 to the first vehicle 31.
[0101] Furthermore, if the storage means 27 does not contain location information corresponding to the location information of the second vehicles 33 and 34, the first transmitting means 23 transmits a communication request message using broadcast radio communication.
[0102] <Flowchart of information and communication method using information and communication system 100A> The flow of the information communication method executed by the information communication system 100A configured as described above will be explained with reference to Figure 9. Figure 9 is a flowchart showing the flow of the information communication method of the information communication system 100A according to exemplary embodiment 3 of the present invention. As shown in Figure 9, the information communication method includes steps S21 to S27.
[0103] First, the first vehicle 31 transmits a communication request message to the server device 1C using wireless communication. The receiving means 21 receives a communication request message from the first vehicle 31 using wireless communication, specifying selection conditions for selecting another vehicle (S21). For example, the receiving means 21 receives a communication request message from the first vehicle 31 shown in Figure 2 using C-V2X.
[0104] Next, the selection means 22 selects a second vehicle that satisfies the selection criteria (S22). The selection means 22 can, for example, identify a truck 32 that obstructs the view of vehicle A31 shown in Figure 2, based on the location information and vehicle type of each vehicle. The selection means 12 selects vehicles B33 and C34, which are located in front of the truck 32 shown in Figure 2, as the second vehicle.
[0105] Next, the search means 26 refers to the location information of each vehicle stored in the storage means 27 and determines whether or not the location information of the second vehicles 33 and 34 is stored in the storage means 27 (S23).
[0106] If the location information of the second vehicles 33 and 34 is stored in the storage means 27 (S23, Yes), the first transmitting means 23 transmits the communication connection information corresponding to the second vehicles 33 and 34 stored in the storage means 27 to the first vehicle 31 (S24).
[0107] Furthermore, if the location information of the second vehicles 33 and 34 is not stored in the storage means 27 (S23, No), the first transmission means 23 transmits a communication request message to the second vehicles 33 and 34 (S25).
[0108] When the second vehicles 33 and 34 receive a communication request message from the server device 1C, the second transmitting means 24 of the in-vehicle terminals of the second vehicles 33 and 34 transmits its own communication connection information to the first vehicle 31. At this time, the second transmitting means 24 also transmits its own communication connection information to the server device 1C (S26).
[0109] When the receiving means 21 of the server device 1C receives communication connection information from the second vehicles 33 and 34, the search means 26 stores the location information of the second vehicles and the received communication connection information of the second vehicles in the storage means 27 in association with each other (S27).
[0110] <Effects of the Information and Communication System 100A according to Exemplary Embodiment 3> As described above, according to the information communication system 100A of this exemplary embodiment, when location information corresponding to the location information of the second vehicle is stored in the storage means 27, the first transmitting means 23 transmits the communication connection information corresponding to the second vehicle stored in the storage means 27 to the first vehicle 31. Therefore, the first transmitting means 23 does not need to send a communication request message to the second vehicle, and processing time can be shortened.
[0111] [Examples of implementation using software] Some or all of the functions of server devices 1, 1A to 1C and information and communication systems 100 and 100A may be implemented by hardware such as integrated circuits (IC chips) or by software.
[0112] In the latter case, server devices 1, 1A-1C, and information and communication systems 100 and 100A are implemented by a computer that executes instructions for a program, which is software that implements each function. An example of such a computer (hereinafter referred to as computer C) is shown in Figure 10. Computer C includes at least one processor C1 and at least one memory C2. Memory C2 stores a program P that causes computer C to operate as server devices 1, 1A-1C, and information and communication systems 100 and 100A. In computer C, the processor C1 reads program P from memory C2 and executes it, thereby implementing each function of server devices 1, 1A-1C, and information and communication systems 100 and 100A.
[0113] Processor C1 can include, for example, a CPU (Central Processing Unit), GPU (Graphic Processing Unit), DSP (Digital Signal Processor), MPU (Micro Processing Unit), FPU (Floating Point Number Processing Unit), PPU (Physics Processing Unit), microcontroller, or a combination thereof. Memory C2 can include, for example, flash memory, HDD (Hard Disk Drive), SSD (Solid State Drive), or a combination thereof.
[0114] Computer C may also be equipped with RAM for loading program P at runtime and for temporarily storing various data. Furthermore, computer C may be equipped with communication interfaces for sending and receiving data with other devices. Additionally, computer C may be equipped with input / output interfaces for connecting input / output devices such as keyboards, mice, displays, and printers.
[0115] Furthermore, program P can be recorded on a non-temporary, tangible recording medium M that is readable by computer C. Such a recording medium M could be, for example, tape, disk, card, semiconductor memory, or programmable logic circuitry. Computer C can acquire program P via such a recording medium M. Program P can also be transmitted via a transmission medium. Such a transmission medium could be, for example, a communication network or broadcast waves. Computer C can also acquire program P via such a transmission medium.
[0116] [Additional Note 1] The present invention is not limited to the embodiments described above, and various modifications are possible within the scope of the claims. For example, embodiments obtained by appropriately combining the technical means disclosed in the embodiments described above are also included in the technical scope of the present invention.
[0117] [Additional Note 2] Some or all of the embodiments described above may also be described as follows. However, the present invention is not limited to the embodiments described below.
[0118] (Note 1) A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, A transmission means for transmitting the communication request message to the second vehicle, A server device equipped with the following features.
[0119] According to the above configuration, the first vehicle can identify and communicate with a vehicle that meets the desired conditions by specifying selection criteria for other vehicles in a communication request message.
[0120] (Note 2) The selection condition is a vehicle located further ahead than a specific vehicle ahead of the first vehicle in the direction of travel. The selection means identifies the specified vehicle by referring to the location information of the first vehicle, A vehicle located further forward than the specified vehicle is selected as the second vehicle. The server device described in Appendix 1.
[0121] According to the above configuration, the selection means can easily select a second vehicle that matches the selection criteria.
[0122] (Note 3) The selection condition is a vehicle located further ahead than a specific vehicle ahead of the first vehicle in the direction of travel. The selection means identifies the first vehicle by referring to the location information of the specified vehicle, A vehicle located further forward than the aforementioned specific vehicle is selected as the second vehicle. The server device described in Appendix 1.
[0123] According to the above configuration, the selection means can easily identify the first vehicle.
[0124] (Note 4) The aforementioned selection criteria include at least one of the following: vehicle license plate information, vehicle type, and body color. The system further includes detection means for detecting a vehicle from an image captured by a camera, The selection means selects the second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means. The server device described in Appendix 1.
[0125] According to the above configuration, the first vehicle can identify and communicate with any vehicle by specifying the characteristics of the other vehicle in a communication request message.
[0126] (Note 5) The transmitting means transmits the communication request message to the second vehicle, instructing it to transmit sensing information acquired by a sensing device mounted on the second vehicle to the first vehicle. A server device as described in any of the appendices 1 to 4.
[0127] According to the above configuration, even if there is a vehicle obstructing the view in front of the first vehicle, information about what is in front of the obstructing vehicle can be obtained.
[0128] (Note 6) The transmitting means transmits the communication request message to the second vehicle instructing it to transmit communication connection information of the second vehicle in wireless communication to the first vehicle. A server device as described in any of the appendices 1 to 4.
[0129] With the above configuration, the first vehicle will be able to perform high-capacity data communication with the second vehicle.
[0130] (Note 7) The transmitting means transmits the communication request message to the second vehicle, which includes the communication connection information of the first vehicle in wireless communication. The server device described in Appendix 5 or 6.
[0131] With the above configuration, the second vehicle can communicate with the first vehicle without using broadcast communication.
[0132] (Note 8) A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, A storage means that stores the location information of each vehicle included in a group of vehicles and the communication connection information of each vehicle in wireless communication in association with each other, A search means that searches for location information corresponding to the location information of the second vehicle by referring to the location information of each vehicle stored in the storage means, If the storage means stores location information corresponding to the location information of the second vehicle, the transmission means transmits the communication connection information corresponding to the second vehicle stored in the storage means to the first vehicle. A server device equipped with the following features.
[0133] With the above configuration, the transmitting means no longer needs to send a communication request message to the second vehicle, thereby reducing processing time.
[0134] (Note 9) If the storage means does not store location information corresponding to the location information of the second vehicle, the transmitting means transmits the communication request message using broadcast wireless communication, as described in Appendix 8 of the server device.
[0135] (Note 10) A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, A first transmission means for transmitting the communication request message to the second vehicle, A second transmission means for transmitting predetermined information possessed by the second vehicle to the first vehicle, An information and communication system equipped with [the following features].
[0136] According to the above configuration, the first vehicle can identify and communicate with a vehicle that meets the desired conditions by specifying selection criteria for other vehicles in a communication request message.
[0137] (Note 11) The selection condition is a vehicle located further ahead than a specific vehicle ahead of the first vehicle in the direction of travel. The selection means identifies the specified vehicle by referring to the location information of the first vehicle, A vehicle located further forward than the specified vehicle is selected as the second vehicle. The information and communication system described in Appendix 10.
[0138] According to the above configuration, the selection means can easily select a second vehicle that matches the selection criteria.
[0139] (Note 12) The selection condition is a vehicle located further ahead than a specific vehicle ahead of the first vehicle in the direction of travel. The selection means identifies the first vehicle by referring to the location information of the specified vehicle, A vehicle located further forward than the aforementioned specific vehicle is selected as the second vehicle. The information and communication system described in Appendix 10.
[0140] According to the above configuration, the selection means can easily identify the first vehicle.
[0141] (Note 13) The aforementioned selection criteria include at least one of the following: vehicle license plate information, vehicle type, and body color. The system further includes detection means for detecting a vehicle from an image captured by a camera, The selection means selects the second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means. The information and communication system described in Appendix 10.
[0142] According to the above configuration, the first vehicle can identify and communicate with any vehicle by specifying the characteristics of the other vehicle in a communication request message.
[0143] (Note 14) The predetermined information possessed by the second vehicle is sensing information acquired by a sensing device mounted on the second vehicle. An information and communication system as described in any of the appendices 10 to 13.
[0144] According to the above configuration, even if there is a vehicle obstructing the view in front of the first vehicle, information about what is in front of the obstructing vehicle can be obtained.
[0145] (Note 15) The predetermined information possessed by the second vehicle is the communication connection information of the second vehicle in wireless communication. An information and communication system as described in any of the appendices 10 to 13.
[0146] With the above configuration, the first vehicle will be able to perform high-capacity data communication with the second vehicle.
[0147] (Note 16) A storage means that stores the location information of each vehicle included in a group of vehicles and the communication connection information of each vehicle in wireless communication in association with each other, The system further comprises a search means that searches for location information corresponding to the location information of the second vehicle by referring to the location information of each vehicle stored in the storage means, If the storage means has location information corresponding to the location information of the second vehicle stored in it, the first transmitting means transmits the communication connection information corresponding to the second vehicle stored in the storage means to the first vehicle. An information and communication system as described in any of the appendices 10 to 15.
[0148] With the above configuration, the first transmission means no longer needs to send a communication request message to the second vehicle, thereby shortening the processing time.
[0149] (Note 17) If the storage means does not store location information corresponding to the location information of the second vehicle, the first transmitting means transmits the communication request message using broadcast radio communication, as described in Appendix 16.
[0150] (Note 18) Using wireless communication, a communication request message is received from the first vehicle, specifying selection criteria for selecting another vehicle. Select a second vehicle that meets the aforementioned selection criteria. The communication request message is sent to the second vehicle. Information and communication methods.
[0151] According to the above configuration, the first vehicle can identify and communicate with a vehicle that meets the desired conditions by specifying selection criteria for other vehicles in a communication request message.
[0152] (Note 19) On the computer, A process that uses wireless communication to receive a communication request message from a first vehicle specifying selection criteria for selecting another vehicle, A process for selecting a second vehicle that satisfies the aforementioned selection conditions, The process of sending the communication request message to the second vehicle, A program that executes something.
[0153] According to the above configuration, the first vehicle can identify and communicate with a vehicle that meets the desired conditions by specifying selection criteria for other vehicles in a communication request message.
[0154] (Note 20) The system comprises at least one processor, the processor performing the process of receiving a communication request message from a first vehicle using wireless communication, which specifies selection criteria for selecting another vehicle. A process for selecting a second vehicle that satisfies the aforementioned selection conditions, The process of sending the communication request message to the second vehicle, A server device that executes [the function / process].
[0155] Furthermore, this server device may also be equipped with memory, and this memory may store a program that causes the processor to execute the receiving process, the selecting process, and the transmitting process. This program may also be recorded on a computer-readable, non-temporary, tangible recording medium.
[0156] (Note 21) The system comprises at least one processor, the processor performing the process of receiving a communication request message from a first vehicle using wireless communication, which specifies selection criteria for selecting another vehicle. A process for selecting a second vehicle that satisfies the aforementioned selection conditions, A first transmission process that transmits the communication request message to the second vehicle, A second transmission process that transmits predetermined information possessed by the second vehicle to the first vehicle, An information and communication system that performs this task.
[0157] Furthermore, this information communication system may also be equipped with memory, which may store a program that causes the processor to execute the receiving process, the selecting process, the first transmission process, and the second transmission process. This program may also be recorded on a computer-readable, non-temporary, tangible recording medium. [Explanation of symbols]
[0158] 1,1A,1B,1C Server Devices 11,21 Receiving means 12,22 Selection method 13 Transmission method 14,25 Detection means 15,26 Search methods 16,27 Memory means 23 First transmission means 24 Second transmission means 31. First vehicle 32. Specific Vehicles 33,34 Second vehicle 40 Imaging device 100,100A Information and Communication System
Claims
1. A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, The system includes a transmission means for transmitting the communication request message to the second vehicle, The aforementioned selection criteria include at least one of the vehicle's license plate information and body color information. The system further includes detection means for detecting a vehicle from an image captured by a camera, The selection means selects the second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means. Server device.
2. The selection condition is a vehicle located further ahead than a specific vehicle in the direction of travel of the first vehicle. The selection means identifies the specified vehicle by referring to the location information of the first vehicle, A vehicle located further forward than the specified vehicle is selected as the second vehicle. The server device according to claim 1.
3. The selection condition is a vehicle located further ahead than a specific vehicle in the direction of travel of the first vehicle. The selection means identifies the first vehicle by referring to the location information of the specified vehicle, A vehicle located further forward than the aforementioned specific vehicle is selected as the second vehicle. The server device according to claim 1.
4. The transmitting means transmits the communication request message to the second vehicle, instructing it to transmit sensing information acquired by a sensing device mounted on the second vehicle to the first vehicle. A server device according to any one of claims 1 to 3.
5. The transmitting means transmits the communication request message to the second vehicle instructing it to transmit communication connection information of the second vehicle in wireless communication to the first vehicle. A server device according to any one of claims 1 to 3.
6. A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, A storage means that stores the location information of each vehicle included in a group of vehicles and the communication connection information of each vehicle in wireless communication in association with each other, A search means that searches for location information corresponding to the location information of the second vehicle by referring to the location information of each vehicle stored in the storage means, If the storage means stores location information corresponding to the location information of the second vehicle, the system includes a transmission means that transmits communication connection information corresponding to the second vehicle stored in the storage means to the first vehicle. The aforementioned selection criteria include at least one of the vehicle's license plate information and body color information. The system further includes detection means for detecting a vehicle from an image captured by a camera, The selection means selects the second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means. Server device.
7. A receiving means that uses wireless communication to receive a communication request message from a first vehicle specifying selection conditions for selecting another vehicle, A selection means for selecting a second vehicle that satisfies the aforementioned selection conditions, A first transmission means for transmitting the communication request message to the second vehicle, The system includes a second transmission means for transmitting predetermined information possessed by the second vehicle to the first vehicle, The aforementioned selection criteria include at least one of the vehicle's license plate information and body color information. The system further includes detection means for detecting a vehicle from an image captured by a camera, The selection means selects the second vehicle based on whether at least one of the selection conditions matches the characteristics of the vehicle detected by the detection means. Information and communication systems.
8. An information communication method performed by a server device, The steps include: receiving a communication request message from a first vehicle using wireless communication, specifying selection criteria for selecting another vehicle; A selection step of selecting a second vehicle that satisfies the aforementioned selection conditions, The steps include sending the communication request message to the second vehicle, The aforementioned selection criteria include at least one of the vehicle's license plate information and body color information. The method further includes the step of detecting a vehicle from an image captured by a camera, In the selection step, the second vehicle is selected based on whether at least one of the selection conditions matches the characteristics of the detected vehicle. Information and communication methods.
9. On the computer, A process that uses wireless communication to receive a communication request message from a first vehicle specifying selection criteria for selecting another vehicle, A selection process for selecting a second vehicle that satisfies the aforementioned selection conditions, The process of sending the communication request message to the second vehicle is performed, The aforementioned selection criteria include at least one of the vehicle's license plate information and body color information. To the aforementioned computer, Further processing is performed to detect vehicles from images captured by the camera. In the selection process, the second vehicle is selected based on whether at least one of the selection conditions matches the characteristics of the detected vehicle. program.
Citation Information
Patent Citations
Inter-vehicle communication information processor
JP2004145672A
Image providing device and image providing method
JP2013187877A
Driving control device, driving control method, and inter-vehicle communication system
JP2019207700A
In-vehicle device, distribution system, and method for receiving picture
JP2021056191A
Information processing device, distribution system, and information processing method
JP2021124926A