The present application claims priority under 35 U.S.C. § 119 to Japanese Patent Application No. 2020-045868, filed Mar. 16, 2020, entitled “Parking Assistance System.” The contents of this application are incorporated herein by reference in their entirety.
The present disclosure relates to a system for assisting parking of a vehicle in a situation of charging an on-board battery in a non-contact manner.
Regarding a non-contact power feed system, there has been proposed a technique of selecting a power feed device (parking lot), which is to be used for feeding of electric power, from among searched power feed devices in accordance with a user's operation (such as selecting a vehicle that is a power feed target and instructing start of external charging) (see, for example, Japanese Patent No. 5910315).
Regarding an on-bard communication device, there has been proposed a technique of transmitting an inquiry signal for confirmation of reception to a plurality of power feed devices while reducing a magnitude of the inquiry signal step by step, and determining the specific power feed device (see, for example, Japanese Patent No. 5849876).
However, if the non-contact charging system and the vehicle are caused to automatically cooperate with each other and information for assisting parking is automatically displayed on an image display device mounted on the vehicle upon just approaching of the vehicle to a parking space, a user not intending to park the vehicle may feel annoyed by the displayed information.
In consideration of the above-described state of the art, it is desirable to provide a system that can improve the accuracy in estimating whether a user of a vehicle intends to park the vehicle, and that can reduce the annoyance felt by the user with display of parking assistance information.
A parking assistance system according to one aspect of the present disclosure includes a vehicle state recognition unit that recognizes a relative position of a power receiving unit mounted on a vehicle to a power transmitting unit that transmits electric power to the power receiving unit in a non-contact manner to charge a battery mounted on the vehicle, and a parking assistance unit that displays, on an image display device mounted on the vehicle, parking assistance information to assist parking of the vehicle in accordance with the relative position of the power receiving unit to the power transmitting unit, that relative position having been recognized by the vehicle state recognition unit, wherein the parking assistance unit includes a parking intention estimation unit that calculates a relative velocity vector representing a time-dependent change of the relative position having been recognized by the vehicle state recognition unit, and that estimates, based on a direction of the relative velocity vector, whether a user of the vehicle intends to park the vehicle into a parking space where the power transmitting unit is installed, and the parking assistance unit displays the parking assistance information on the image display device on condition of the parking intention estimation unit having determined that the user of the vehicle intends to park the vehicle.
According to the parking assistance system having the above-described feature, whether the user of the vehicle intends to park the vehicle into the parking space where the power transmitting unit is installed is determined based on the relative velocity vector representing the time-dependent change of the relative position of the power receiving unit or of the vehicle including the power receiving unit to the power transmitting unit set as a reference. The parking assistance information is displayed on the image display device in accordance with an estimation result that the user of the vehicle intends to park the vehicle into the parking space. On the other hand, the parking assistance information is not displayed on the image display device in accordance with an estimation result that the user of the vehicle does not intend to park the vehicle into the parking space. As a result, the accuracy in estimating the intention of the user to park the vehicle can be improved, and the user can be relieved from feeling annoyed by the parking assistance information that is selectively displayed or not on the image display device in accordance with the estimation result.
The expression of “recognizing” information is used herein as a concept including all types of arithmetic processes for processing the information into a state usable in a subsequent process and so on, such as receiving the information, reading the information from a storage device, searching the information from a database and so on, calculating, estimating, or determining the information based on the read information or the searched information, and storing the calculated or other information into the storage unit.
In the above-described parking assistance system, preferably, the parking intention estimation unit determines that the user of the vehicle intends to park the vehicle into the parking space, when the parking space where the power transmitting unit is installed is recognized and the relative velocity vector is oriented toward the parking space.
According to the parking assistance system having the above-described feature, when the relative velocity vector is oriented toward the parking space, it is estimated that the user intends to park the vehicle into the parking space. Then, the parking assistance information is displayed on the image display device in accordance with the above estimation result. On the other hand, when the relative velocity vector is not oriented toward the parking space, it is estimated that the user does not intend to park the vehicle into the parking space. Thus, the parking assistance information is not displayed on the image display device in accordance with the estimation result. As a result, the accuracy in estimating the intention of the user to park the vehicle can be improved, and the user can be relieved from feeling annoyed by the parking assistance information that is selectively displayed or not on the image display device in accordance with the estimation result.
In the above-described parking assistance system, preferably, the parking assistance unit calculates the relative velocity vector on condition that the relative position having been recognized by the vehicle state recognition unit falls within a range in which the power transmitting unit and the power receiving unit are detectable through wireless communication.
According to the parking assistance system having the above-described feature, whether the user of the vehicle intends to park the vehicle into the parking space where the power transmitting unit is installed is determined on condition that the power transmitting unit and the power receiving unit have come into a range in which both the units are detectable through wireless communication. It is inferred that the intention of the user to park the vehicle into the parking space or not is more clearly reflected on the relative velocity vector when the vehicle has come close to the parking space to such an extent that the power transmitting unit and the power receiving unit are positioned within the range in which both the units are detectable through wireless communication. Therefore, the accuracy in estimating whether the user intends to park the vehicle can be improved. Thus, the user can be relieved from feeling annoyed by the parking assistance information that is selectively displayed or not on the image display device in accordance with the estimation result.
In the above-described parking assistance system, preferably, the vehicle state recognition unit further recognizes a steering angle of the vehicle, and the parking intention estimation unit calculates the relative velocity vector based on, in addition to the relative position having been recognized by the vehicle state recognition unit, the steering angle of the vehicle.
According to the parking assistance system having the above-described feature, since it is inferred that the intention of the user to park the vehicle into the parking space or not is more clearly reflected on the steering angle of the vehicle, the accuracy in estimating whether the user intends to park the vehicle can be further improved. Thus, the user can be further relieved from feeling annoyed by the parking assistance information that is selectively displayed or not on the image display device in accordance with the estimation result.
The advantages of the disclosure will become apparent in the following description taken in conjunction with the following drawings.
A parking assistance system 200 according to an embodiment of the present disclosure, illustrated in
For charging the battery 21 mounted on the vehicle 2, the power transmitting unit 10 transmits electric power to a power receiving unit 20, mounted on the vehicle 2, in a non-contact manner. The power transmitting unit 10 is installed in, for example, a parking space for the vehicle 2.
The charge control device 12 controls a power transmitting operation of the power transmitting unit 10. The charge control device 12 is constituted by an arithmetic processing unit (such as a CPU, a single-core processor, or a multi-core processor). The arithmetic processing unit reads necessary data and program (software) from a storage device (such as a HDD, a memory, or an SSD constituted by a memory) and executes arithmetic processing of the read data in accordance with the read program.
The vehicle 2 illustrated in
For charging the battery 21, the power receiving unit 20 receives electric power from the power transmitting unit 10, installed in a designated place, in a non-contact manner. The battery 21 is constituted by, for example, a lithium-ion secondary battery. The on-board control device 22 controls operations of various components of the vehicle 2 as appropriate in accordance with output signals of various sensors constituting the sensor group 24.
The on-board control device 22 includes the parking assistance system 200. As in the charge control device 12, the on-board control device 22 is constituted by a storage device (such as a HDD, a memory, or an SSD constituted by a memory) and an arithmetic processing unit (such as a CPU, a single-core processor, or a multi-core processor) that reads necessary data and program (software) from the storage device and executes arithmetic processing of the read data in accordance with the read program. The input interface 241 is constituted by touch panel buttons and switches, a voice input device as required, and so on. The output interface 242 includes an image display device 2422 and a voice output device.
The parking assistance system 200 includes a vehicle state recognition unit 210 and a parking assistance unit 220. The vehicle state recognition unit 210 recognizes a vehicle state, such as a relative position of the power receiving unit 20 to the power transmitting unit 10, through communication with the vehicle 2 or the on-board control device 22 mounted on the vehicle 2. The parking assistance unit 220 includes a parking intention estimation unit 222. The parking intention estimation unit 222 estimates, based on the relative position and so on recognized by the vehicle state recognition unit 210, whether a user of the vehicle intends to park the vehicle. On condition of the parking intention estimation unit 222 estimating that the user intends to park the vehicle, the parking assistance unit 220 displays, on an image display device 2422 constituting the output interface 242 of the vehicle 2, parking assistance information that represents the relative position of the power receiving unit 20 to the power transmitting unit 10, that relative position having been recognized by the vehicle state recognition unit 210.
The parking assistance system 200, the vehicle state recognition unit 210, and the parking assistance unit 220, the latter two being components of the parking assistance system 200, are constituted by an arithmetic processing unit (such as a CPU, a single-core processor, or a multi-core processor). The arithmetic processing unit reads necessary data and program (software) from a storage device (such as a HDD, a memory, or an SSD constituted by a memory) and executes arithmetic processing of the read data in accordance with the read program.
Although the on-board control device 22, the input interface 241, and the output interface 242 may be constituted as on-board devices that are permanently mounted on the vehicle 2, they may be constituted by an information processing terminal, such as a smartphone or a tablet terminal, which is carried with a user and is temporarily mounted on the vehicle 2.
An example of the functions of the parking assistance system 200 having the above-described configuration will be described below with reference to a flowchart of
First, a position and a steering angle of the vehicle 2 are recognized by the vehicle state recognition unit 210 based on output signals from a positioning sensor and a steering angle sensor which constitute the sensor group 24 in the vehicle 2 (
Furthermore, the vehicle state recognition unit 210 recognizes the relative position of the power receiving unit 20 to the power transmitting unit 10 based on the position of the vehicle 2, which has been detected as one of the vehicle states (
The term “relative position” is used herein as a concept including a relative posture as well, namely a posture of the power-receiving-unit coordinate system (X2, Y2) in the world coordinate system on the basis of a posture of the power-transmitting-unit coordinate system (X1, Y1) in the world coordinate system, both the power-transmitting-unit and power-receiving-unit coordinate systems being illustrated in
Furthermore, the parking intention estimation unit 222 calculates a relative velocity vector based on the relative positions of the power receiving unit 20 to the power transmitting unit 10, which have been recognized by the vehicle state recognition unit 210 on a time series basis (
Whether the user or driver of the vehicle 2 intends to park the vehicle is determined based on the relative velocity vector V and a steering angle δ of the vehicle 2, the steering angle δ being recognized by the vehicle state recognition unit 210 (
First, the relative velocity vector V is corrected to a relative velocity vector V(8) in accordance with the steering angle δ of the vehicle 2. For example, in accordance with a steering angle δ1 of the vehicle 2 moving backward while curving to the left, the relative velocity vector V is corrected to a relative velocity vector V(δ1) of which tip is deviated toward the left side of the vehicle 2 as indicated by a one-dot-chain line in
Then, whether the user of the vehicle 2 intends to park the vehicle into the parking space PS is estimated or determined depending on whether the relative velocity vector V(δ) after having been corrected in accordance with the steering angle δ of the vehicle 2 is oriented toward the parking space PS where the power transmitting unit 10 is installed. For example, because the relative velocity vector V(δ1) after the correction is not oriented toward the parking space PS as illustrated in
If it is determined that the user intends to park the vehicle (
In this embodiment, based on the detection result of the steering angle among the detection results for the vehicle 2 (see
Furthermore, the parking assistance information is created so as to present a vehicle rear image img(rear) representing a situation on the rear side of the vehicle 2 as illustrated on the left side in
The parking assistance information is displayed by the on-board control device 22 on the image display device 2422 constituting the output interface 242 (
On the other hand, if it is determined that the user does not intend to park the vehicle (
According to the above-described parking assistance system 200 in cooperation with the non-contact charging system 1, the relative velocity vector V is calculated which represents the time-dependent change of the relative position P of the power receiving unit 20 or of the vehicle 2 including the power receiving unit 20 to the power transmitting unit 10 set as a reference (
The parking assistance information is displayed on the image display device 2422 in accordance with the estimation result that the user of the vehicle 2 intends to park the vehicle into the parking space PS (
In the above-described embodiment, the parking assistance system 200 is constituted by the on-board control device 22 mounted on the vehicle 2. In another embodiment, however, the parking assistance system 200 may be constituted by the charge control device 12 of the non-contact charging system 1. In that case, the vehicle states detected by the sensor group 24 on the vehicle 2 may be transmitted to the non-contact charging system 1 and, in accordance with the detected vehicle states, the relative position of the power receiving unit 20 to the power transmitting unit 10 and a relative position vector therebetween may be recognized by the parking assistance system in the charge control device 12 instead of in the vehicle 2.
In the above-described embodiment, whether the user of the vehicle 2 intends to park the vehicle is determined depending on whether the relative velocity vector V is oriented toward the parking space PS (see
In the above-described embodiment, whether the user of the vehicle 2 intends to park the vehicle is determined based on the relative velocity vector V(δ) after having been corrected in accordance with the steering angle δ of the vehicle 2 (see
The parking assistance unit 220 may calculate the relative velocity vector V on condition that the relative position having been recognized by the vehicle state recognition unit 210 falls within a range in which the power transmitting unit 10 and the power receiving unit 20 are detectable through wireless communication.
It is inferred that the intention of the user to park the vehicle into the parking space PS or not is more clearly reflected on the relative velocity vector V when the vehicle 2 has come close to the parking space PS to such an extent that the power transmitting unit 10 and the power receiving unit 20 are positioned within the range in which both the units are detectable through wireless communication. Therefore, the accuracy in estimating whether the user intends to park the vehicle can be improved. Thus, the user can be relieved from feeling annoyed by the parking assistance information that is selectively displayed or not on the image display device 2422 in accordance with the estimation result. Although a specific form of embodiment has been described above and illustrated in the accompanying drawings in order to be more clearly understood, the above description is made by way of example and not as limiting the scope of the invention defined by the accompanying claims. The scope of the invention is to be determined by the accompanying claims. Various modifications apparent to one of ordinary skill in the art could be made without departing from the scope of the invention. The accompanying claims cover such modifications.
Number | Date | Country | Kind |
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2020-045868 | Mar 2020 | JP | national |