IP Library Granted Patent US 12,472,982
Granted Patent B2
US 12,472,982 · App. 18/372,714 · Granted Nov 18, 2025

Mobile object control device, mobile object control method, and program

Inventors: Kotaro Fujimura (Wako, JP); Atsushi Kato (Wako, JP); Yuji Yasui (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
B60W60/0011B60W30/09B60W30/0956B60W40/105B60W50/0097B60W60/0015
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Quick Facts
Patent No.
US 12,472,982
App. No.
18/372,714
Granted
Nov 18, 2025
Kind
B2
Abstract

Provided is a mobile object control device configured to: recognize a surrounding situation of a mobile object; set, based on the recognized surrounding situation, a risk area in which positions of the surrounding situation are associated with risk values that are indicator values indicating degrees to which the mobile object is to avoid traveling; generate a target trajectory indicating a route along which the mobile object is to travel in the future; cause the mobile object to travel along the generated target trajectory; and set at least one observation point in each of three or more provisional trajectories branching at a specific location ahead of the mobile object, and generate the target trajectory based on the risk area and the at least one observation point.

Claims (33)

1 . A mobile object control device comprising a storage medium storing computer-readable commands, and a processor connected to the storage medium, the processor being configured to execute the computer-readable commands to:

recognize a surrounding situation of a mobile object;

set, based on the recognized surrounding situation, a risk area in which positions of the surrounding situation are associated with risk values that are indicator values indicating degrees to which the mobile object is to avoid traveling;

generate a target trajectory indicating a route along which the mobile object is to travel in a predicted future;

cause the mobile object to travel along the generated target trajectory; and

set at least one observation point in each of three or more provisional trajectories branching at a specific location ahead of the mobile object, and determine the target trajectory from among the three or more provisional trajectories based on the risk area and a risk value of the at least one observation point.

2 . The mobile object control device according to claim 1 , wherein the processor sets, as the three or more provisional trajectories, at least one provisional trajectory in a travel direction of the mobile object and two provisional trajectories on left and right sides with respect to the travel direction.

3 . The mobile object control device according to claim 2 , wherein the processor generates the two left and right provisional trajectories as arcs with respect to the provisional trajectory set in the travel direction of the mobile object.

4 . The mobile object control device according to claim 3 , wherein the processor changes lengths of the arcs according to a speed of the mobile object.

5 . The mobile object control device according to claim 1 , wherein the processor determines, from among the three or more provisional trajectories as the target trajectory based on the set risk area, a provisional trajectory including an observation point having the smallest risk value among the at least one observation point.

6 . The mobile object control device according to claim 5 , wherein the processor repeats the cycle of setting the determined target trajectory as a center provisional trajectory of the three or more provisional trajectories and generating left and right provisional trajectories of the three or more provisional trajectories from the set center provisional trajectory.

7 . The mobile object control device according to claim 5 ,

wherein the risk value of the center provisional trajectory of the three or more provisional trajectories is multiplied by a coefficient for reducing the risk value, and

wherein the processor determines, from among the three or more provisional trajectories as the target trajectory based on the set risk area, a provisional trajectory including an observation point having the smallest risk value among the at least one observation point.

8 . The mobile object control device according to claim 5 , wherein the processor determines the center provisional trajectory as the target trajectory if the curvature of the center provisional trajectory among the three or more provisional trajectories is equal to or smaller than a threshold value.

9 . A mobile object control device comprising a storage medium storing computer-readable commands, and a processor connected to the storage medium, the processor being configured to execute the computer-readable commands to:

recognize a surrounding situation of a mobile object;

set, based on the recognized surrounding situation, a risk area in which positions of the surrounding situation are associated with risk values that are indicator values indicating degrees to which the mobile object is to avoid traveling;

generate a target trajectory indicating a route along which the mobile object is to travel in a predicted future;

cause the mobile object to travel along the generated target trajectory; and

set one observation point in a travel direction of the mobile object and two observation points on left and right sides with respect to the travel direction of the mobile object, and determines the target trajectory from among three provisional trajectories passing through the three observation points respectively based on the risk area and risk values of the observation points.

10 . A mobile object control method to be executed by a computer, the mobile object control method comprising:

recognizing a surrounding situation of a mobile object;

setting, based on the recognized surrounding situation, a risk area in which positions of the surrounding situation are associated with risk values that are indicator values indicating degrees to which the mobile object is to avoid traveling;

generating a target trajectory indicating a route along which the mobile object is to travel in a predicted future;

causing the mobile object to travel along the generated target trajectory; and

setting at least one observation point in each of three or more provisional trajectories branching at a specific location ahead of the mobile object, and determine the target trajectory from among the three or more provisional trajectories based on the risk area and a risk value of the at least one observation point.

11 . A non-transitory computer-readable storage medium having stored thereon a program for causing a computer to:

recognize a surrounding situation of a mobile object;

set, based on the recognized surrounding situation, a risk area in which positions of the surrounding situation are associated with risk values that are indicator values indicating degrees to which the mobile object is to avoid traveling;

generate a target trajectory indicating a route along which the mobile object is to travel in a predicted future;

cause the mobile object to travel along the generated target trajectory; and

set at least one observation point in each of three or more provisional trajectories branching at a specific location ahead of the mobile object, and determine the target trajectory from among the three or more provisional trajectories based on the risk area and a risk value of the at least one observation point.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2023
From: FUJIMURA, KOTARO; KATO, ATSUSHI; YASUI, YUJI
To: HONDA MOTOR CO., LTD.
Reel/Frame 065416/0001 →
Priority Claims (1)
JP 2022-153282 · Sep 27, 2022 · national
Continuity (1)
Related Publication 20240101152A1 · Mar 28, 2024
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