This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2021-185412 filed on Nov. 15, 2021, the content of which is incorporated herein by reference.
This invention relates to a driving assistance apparatus that assists a driving operation of a driver.
Conventionally, as an apparatus of this type, there is a known apparatus that receives signal information transmitted from a DSRC transmitter provided in a traffic light, obtains a lighting state and a change timing of the traffic light from the received signal information, and displays the lighting state and the change timing on a display device of the vehicle to notify a driver of the lighting state and the change timing. Such an apparatus is described, for example, in Japanese Unexamined Patent Publication No. 2004-171459 (JP2004-171459A). In the apparatus described in JP2004-171459A, a time-to-switch of the traffic light is displayed on the display device.
However, if the driver starts the vehicle after the switching of the traffic light to a green light is notified, the vehicle may stay at the intersection and cannot move after the vehicle has passed a stop line depending on a traffic situation, which may hinder the traffic flow. Therefore, it is desired to have a configuration in which a decrease in the smoothness of the traffic is suppressed while improving the safety of the traffic without hindering the traffic flow in the vicinity.
An aspect of the present invention is a driving assistance apparatus including: a notification part notifying a driver of a subject vehicle of information; a detection part detecting a surrounding situation of the subject vehicle; and an electronic control unit including a microprocessor and a memory connected to the microprocessor. The microprocessor is configured to perform acquiring traffic light information including information on a remaining time period until a traffic light installed at an intersection is switched, the traffic light being switchable to a plurality of modes including a first mode indicating a state in which the subject vehicle is prohibited from passing through the intersection and a second mode indicating a state in which the subject vehicle is permitted to pass through the intersection, controlling the notification part so as to notify the driver of switching information on switching of the traffic light from the first mode to the second mode based on the traffic light information, and determining whether there is a space into which the subject vehicle is movable, in an area after passing through the intersection, based on the surrounding situation detected by the detection part. The microprocessor is configured to perform the controlling including controlling the notification part so as to notify the driver of warning information together with the switching information when it is determined that there is not the space in the area.
The objects, features, and advantages of the present invention will become clearer from the following description of embodiments in relation to the attached drawings, in which:
Hereinafter, an embodiment of the present invention is explained with reference to
In
As illustrated in
Each display portions 10 has a light-emitting diode (LED) disposed inside the display screen 1a. The display portion 10 is turned on by the LED being turned on. The display portion 10 is turned off by the LED being turned off. The display portion 10 is blinked by the LED being blinked. Instead of the LED, another light capable of turning on and off and blinking may be used as the display portion 10. The display screen 1a may be configured by a liquid crystal display, an organic electro luminescence display, or the like, and the display portion 10 may be configured as an image. In
Turning on and off of the display portion 10 is controlled by the in-vehicle controller 20 (
Although not illustrated, all the n display portions 10 are turned on immediately after switching to the stop command state. Every time the unit switching time period Δt elapses from that time point, the display portions 10 are turned off one by one in order from the top.
At this time, a predetermined warning sound is generated from a speaker in a vehicle interior according to a command from the in-vehicle controller 20, and the driver is notified of the switching timing of the traffic light 200. Thus, a driver can recognize that the traffic light 200 will switch to the travelable state (green) soon. As a result, it is possible to prevent a start delay of the subject vehicle 101 at the time of switching to the green light, and a smooth traffic flow is possible.
However, there is a case where even when the traffic light 200 switches to the green light, the subject vehicle 101 cannot immediately enter the intersection 201.
The communication unit 3 is configured to be capable of wirelessly communicating with a communication device such as an optical beacon or a radio beacon provided on the road, that is, capable of road-to-vehicle communication. The communication unit 1 receives, from the communication device provided on the road, the traffic light information on the traffic light located in the traveling direction of the subject vehicle, i.e., the traffic light information on the traffic light installed at the intersection where the subject vehicle passes next. The traffic light information includes information on the switching time period T of the traffic light and the remaining time period until the traffic light switches from the stop command state (for example, red) to the travelable state (for example, green). The communication unit 3 is further configured to be capable of inter-vehicle communication with other vehicles surrounding the subject vehicle, and receives vehicle information such as vehicle speed data and position data of the other vehicle via the inter-vehicle communication.
The external sensor 4 is a sensor that detects an external condition of the subject vehicle. Specifically, the external sensor 4 is configured by a camera that includes an image pickup device such as a CCD or a CMOS and captures an image of the surroundings of the subject vehicle, a radar that detects a position of an object around the subject vehicle by emitting an electromagnetic wave and detecting a reflected wave, and a LIDAR that detects a position (a distance or a direction from the subject vehicle) of an object around the subject vehicle by emitting a laser beam and detecting a reflected light.
The turn signal switch 5 detects an operation of a direction indicator by a driver. The direction indicator is a device for indicating the direction to the surroundings at the time of the right-left turn or the course change of the subject vehicle, and is constituted by a turn signal lever or the like. Although not shown, a positioning sensor that receives a positioning signal transmitted from a positioning satellite such as a GPS satellite or a quasi-zenith satellite is also connected to the controller 20, and the current position of the subject vehicle can be calculated using the positioning information received by the positioning sensor.
The controller 20 includes an electronic control unit having a microprocessor and a memory connecting the microprocessor. More specifically, the controller 20 includes a computer including a CPU, a ROM, a RAM, and other peripheral circuits such as an I/O interface. The controller 20 includes, as functional components, an information acquisition unit 21, a display control unit 22, a sound control unit 23 and a movement determination unit 24.
The information acquisition unit 21 acquires, via the communication unit 3, the traffic light information transmitted from the communication device by the road-to-vehicle communication and the vehicle information transmitted from other vehicle by the inter-vehicle communication. Further, the information acquisition unit 21 acquires detection information of the external condition based on the signal from the external sensor 4 and operation information of the direction indicator based on the signal from the turn signal switch 5.
The display control unit 22 controls turning on and off of the display portion 10 on the basis of the traffic light information acquired by the information acquisition unit 21. In other words, the display control unit 22 calculates the switching time period T and the unit switching time period Δt. The switching time period T is from when the traffic light 200 is in the stop command state until when the traffic light 200 switches to the travelable state on the basis of the traffic light information. The unit switching time period Δt is obtained by dividing the switching time period T by the number n of the display portions 10. Then, the display control unit 22 controls the display device 1 so that when the traffic light 200 switches to the stop command state, all the display portions 10 are turned on, and thereafter, every time the unit switching time period Δt elapses after the traffic light 200 switches to the stop command state, the display portions 10 are turned off one by one from the top. The display control unit 22 controls the display device 1 so that at or after the time point immediately before the switching, that is, the time point the predetermined time period t before (unit switching time period Δt before) the traffic light 200 switches to the travelable state, only the lowermost display portion 10 is turned on.
The sound output device 2 is a device that outputs a sound from a speaker provided in the vehicle interior. The sound control unit 23 controls the sound output device 2 so that a predetermined warning sound is generated from the speaker at the time point immediately before the switching. Only the lowermost display portion 10 is turned on at the time point immediately before the switching, but the warning sound may be generated before or after the time point immediately before the switching.
At the time point immediately before the switching, the movement determination unit 24 predicts a direction in which the subject vehicle 101 travels after passing through the intersection 201 based on a signal from the turn signal switch 5. In other words, it is estimated that the subject vehicle 101 will turn right if the turn signal switch 5 for right-turn is on, it is estimated that the subject vehicle 101 will turn left if the turn signal switch 5 for left-turn is on, and it is estimated that the subject vehicle 101 will travel straight if both the turn signal switch 5 for right-turn and the turn signal switch 5 for left-turn are off. Furthermore, the movement determination unit 24 determines whether a space (movement space) into which the subject vehicle 101 can move exists in the area beyond the intersection 201 in the predicted traveling direction of the subject vehicle 101 on the basis of the signal from the external sensor 4.
There is a possibility that areas on the right side and the left side of the intersection 201 are shaded by a building or the like and the external sensor 4 cannot detect the presence or absence of the movement spaces SP1 and SP2. Therefore, the movement determination unit 24 may acquire the vehicle information of another vehicle via inter-vehicle communication, and detect the position of another vehicle from position data included in the vehicle information, whereby determine whether another vehicle exists in the spaces SP1 and SP2. Also for the space SP3 in front of the subject vehicle 101, whether another vehicle exists may be determined by the inter-vehicle communication.
The display control unit 22 changes the display of the display screen 1a according to a determination result of the movement determination unit 24 at the time point immediately before the switching. In other words, when it is determined that the movement space exists in the predicted traveling direction of the subject vehicle 101, as illustrated in
As illustrated in
In a case where a positive determination is made in S2, the processing proceeds to S3, and the controller 20 outputs a control signal to the sound output device 2 so that a predetermined warning sound, for example, “boing” or the like is generated from the speaker. Next, in S4, the controller 20 estimates the traveling direction of the subject vehicle 101 on the basis of a signal from the turn signal switch 5. Specifically, the controller 20 estimates that the subject vehicle 101 will turn right if the turn signal switch 5 for right-turn is on, estimates that the subject vehicle 101 will turn left if the turn signal switch 5 for left-turn is on, and estimates that the subject vehicle 101 will travel straight if both the turn signal switches 5 for right-turn and left-turn are off.
Next, in S5, the controller 20 determines whether the movement space into which the subject vehicle 101 can move exists beyond the intersection 201 in the traveling direction of the subject vehicle 101 estimated in S4 on the basis of the signal from the external sensor 4. The controller 20 may determine whether the movement space exists by acquiring position information of another vehicle via the inter-vehicle communication and using the acquired position information. In a case where a negative determination is made in S5, the processing proceeds to S6, and in a case where a positive determination is made, the processing passes S6 and is ended. In S6, the controller 20 outputs a control signal to the display device 1 so that the predetermined warning information such as “caution ahead” is displayed on the display screen 1a, and the processing ends.
The operation of the driving assistance apparatus 100 according to the present embodiment is summarized as follows. As illustrated in
If the traveling direction of the subject vehicle 101 that is stopping at the intersection 201 is, for example, the straight traveling direction, and the movement space SP3 (
Meanwhile, if the movement space SP3 (
According to the present embodiment, the following operations and effects are achievable.
The driving assistance apparatus 100 includes the information acquisition unit 21, the display device 1, the external sensor 4, and the movement determination unit 24 (
Thus, the driver starts the subject vehicle 101 while paying attention to a traffic jam situation ahead. Therefore, when the switching information that the traffic light 200 switches from the red light to the green light is notified, it is possible to prevent the subject vehicle 101 from entering the intersection 201 and being left behind at the intersection 201 without being able to pass through the intersection 201. In other words, it is possible to prevent the subject vehicle 101 from becoming unable to move after erroneously entering the intersection 201 even though the subject vehicle 101 cannot enter the intersection 201. As a result, it is possible to prevent the traffic flow from being obstructed and to achieve smooth traffic.
The driving assistance apparatus 100 includes the turn signal switch 5, and the movement determination unit 24 estimates the traveling direction of the subject vehicle 101 after passing through the intersection 201 based on the signal from the turn signal switch 5 before the subject vehicle 101 passes through the intersection 201 and determines whether the movement spaces SP1 to SP3 exist in the estimated traveling direction (
The driving assistance apparatus 100 includes the display device 1 that displays the information on the remaining time period of the red light included in the switching information of the traffic light 200. When the movement determination unit 24 determines that the movement spaces SP1 to SP3 do not exist, the driving assistance apparatus 100 displays the warning information on the display device 1 together with the information of the remaining time period of the red light (
The driving assistance apparatus 100 includes the sound output device 2 (sound output part) that outputs the switching information of the traffic light 200 with the warning sound (
The above embodiments can be modified into various forms. Several modifications will be described below. In the above embodiment, the information acquisition unit 21 acquires the traffic light information including the information on the remaining time period until the traffic light 200 is switched by the road-to-vehicle communication via the communication unit 3, but after detecting a vehicle position of the subject vehicle, the information acquisition unit may acquire the traffic light information corresponding to the vehicle position of the subject vehicle from an external server device. The traffic light information may be acquired by inter-vehicle communication. In the above embodiment, a red signal indicating a stop command, i.e., a state incapable of passing through an intersection is configured as a first mode, a green signal indicating that traveling is possible, i.e., a state capable of passing through the intersection is treated as a second mode, and the traffic light 200 is treated to be switchable from the first mode to the second mode. However, the first mode and the second mode are not limited to those described above.
In the above embodiment, the switching information of the traffic light 200 (for example, the information on the remaining time period of the red light as the first mode) is notified to the driver via the display device 1 as a display part and the sound output device 2 as a sound output part, but the configuration of a notification part is not limited to the above configuration. In the above embodiment, the warning information is notified by the warning image 15 as a character image, but the warning information may be notified by an illustration image or the like. The warning information may be notified by turning on a warning lamp or the like.
In the above embodiment, the surroundings of the subject vehicle are detected by the external sensor 4 or by the inter-vehicle communication, but the surroundings of the subject vehicle may be detected by another detection part. In the above embodiment, the movement determination unit 24 as a determination unit and an estimation unit estimates the traveling direction of the subject vehicle 101 after passing through the intersection 201, and then determines whether or not the movement space SP1 to P3 of the subject vehicle 101 exists in the traveling direction, but may determine whether or not the traveling space of the subject vehicle exists without estimating the traveling direction of the subject vehicle after passing through the intersection. Therefore, the configuration of a determination unit is not limited to the above configuration.
The present invention can also be used as a driving assistance method including
acquiring traffic light information including information on a remaining time period until a traffic light 200 installed at an intersection 201 is switched, the traffic light 200 being switchable to a plurality of modes including a first mode indicating a state in which the subject vehicle is prohibited from passing through the intersection and a second mode indicating a state in which the subject vehicle is permitted to pass through the intersection, notifying a driver of a subject vehicle 101 of switching information on switching of the traffic light 200 from the first mode to the second mode based on the traffic light information, detecting a surrounding situation of the subject vehicle 101, and determining whether there is a space SP1-SP3 into which the subject vehicle 101 is movable, in an area after passing through the intersection 201, based on the surrounding situation detected, wherein the notifying includes notifying the driver of warning information together with the switching information when it is determined that there is not the space in the area SP1-SP3.
The above embodiment can be combined as desired with one or more of the above modifications. The modifications can also be combined with one another.
According to the present invention, it is possible to prevent a subject vehicle from erroneously entering an intersection in accordance with switching information of a traffic light.
Above, while the present invention has been described with reference to the preferred embodiments thereof, it will be understood, by those skilled in the art, that various changes and modifications may be made thereto without departing from the scope of the appended claims.
Number | Date | Country | Kind |
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2021-185412 | Nov 2021 | JP | national |