IP Library › Granted Patent US 11,834,039
Granted Patent B2
US 11,834,039 · App. 17/490,430 · Granted Dec 5, 2023

Falling object determination device, driving support system, and falling object determination method

Inventors: Takahisa Yokoyama (Kariya, JP); Noriyuki Ido (Kariya, JP)
Assignee: DENSO CORPORATION
B60W30/095B60W30/09B60W40/10G06T7/0004G06T7/215G06V20/56B60W2400/00B60W2420/42B60W2554/404G06T2207/30252
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Quick Facts
Patent No.
US 11,834,039
App. No.
17/490,430
Granted
Dec 5, 2023
Kind
B2
Abstract

A falling object determination device configured to be mounted on a vehicle is provided. The falling object determination device includes an acquisition unit configured to acquire, as a first detection signal, information indicating displacement of an object near a cargo bed of a nearby vehicle which travels near the own vehicle; and a control unit configured to calculate at least one of a vibration frequency, an amplitude and a size of the object near the cargo bed by using the first detection signal, and performs a determination whether the object near the cargo bed is an object which is likely to fall from the cargo bed or an object which is falling from the cargo bed in accordance with a calculation result.

Claims (48)

1. A falling object determination device configured to be mounted to an own vehicle, comprising:

a processor;

a non-transitory computer-readable storage medium; and

a set of computer-executable instructions stored on the non-transitory computer-readable storage medium that cause the processor to:

acquire, as a first detection signal, information indicating displacement of an object near a cargo bed of a nearby vehicle which travels near the own vehicle;

calculate, as a calculation result, at least one of a vibration frequency, a vibration amplitude and a size of the object near the cargo bed by using the first detection signal, the vibration frequency indicating a hardness of the object, the vibration amplitude comprising a height that the object floats upward from the cargo bed, and the size of the object comprising at least one of a height, a width, an area and a volume of the object; and

perform a determination whether the object near the cargo bed is an object which is likely to fall from the cargo bed or an object which is falling from the cargo bed based on the calculation result.

2. The falling object determination device according to claim 1 ,

wherein the set of computer-executable instructions further cause the processor to perform the determination, in response to determining that a collision between the object near the cargo bed and the own vehicle cannot be permitted in accordance with the calculation result.

3. The falling object determination device according to claim 1 ,

wherein the set of computer-executable instructions further cause the processor to determine that the object near the cargo bed is the object which is likely to fall from the cargo bed, in response to the vibration frequency being equal to or greater than a predetermined threshold.

4. The falling object determination device according to claim 1 ,

wherein the set of computer-executable instructions further cause the processor to determine that the object near the cargo bed is the object which is likely to fall from the cargo bed, in response to the vibration amplitude being equal to or greater than a predetermined threshold.

5. The falling object determination device according to claim 1 ,

wherein the set of computer-executable instructions further cause the processor to:

determine that a collision between the object near the cargo bed and the own vehicle cannot be permitted, in response to the size of the object near the cargo bed being equal to or greater than a predetermined size; and

determine that the object near the cargo bed is the object which is falling from the cargo bed, in response to the object being neither the object which is likely to fall in response to nor being located on a road.

6. The falling object determination device according to claim 5 ,

wherein the set of computer-executable instructions further cause the processor to determine that the object near the cargo bed is the object which is falling from the cargo bed, in response to the vibration frequency being equal to or lower than a first threshold predetermined and the vibration frequency being equal to or greater than a second threshold which is lower than the first threshold.

7. The falling object determination device according to claim 1 ,

wherein the set of computer-executable instructions further cause the processor to:

instruct an aspect of driving support to a driving support execution device which is provided at the own vehicle and which executes the driving support of the own vehicle;

determine the aspect of the driving support as a first driving support aspect in response to the object near the cargo bed being the object which is falling from the cargo bed; and

determine the aspect of the driving support as a second driving support aspect in response to the object near the cargo bed being the object which is likely to fall from the cargo bed, a degree of support in the second driving support aspect being lower than a degree of support in the first driving support aspect.

8. The falling object determination device according to claim 7 ,

wherein the first driving support aspect is an aspect in which support is performed to avoid the own vehicle from colliding with the object near the cargo bed.

9. The falling object determination device according to claim 7 ,

wherein the second driving support aspect is an aspect in which support is performed to increase a distance between the own vehicle and the nearby vehicle.

10. A driving support system configured to be mounted on a vehicle, comprising:

the falling object determination device according to claim 7 ;

a first detector configured to output the first detection signal; and

a driving support execution device configured to execute the aspect of the driving support.

11. A falling object determination method comprising:

acquiring, as a first detection signal, information indicating displacement of an object near a cargo bed of a nearby vehicle which travels near a vehicle; and

calculating, as a calculation result, at least one of a vibration frequency, a vibration amplitude and a size of the object near the cargo bed by using the first detection signal, the vibration frequency indicating a hardness of the object, the vibration amplitude comprising a height that the object floats upward from the cargo bed, and the size of the object comprising at least one of a height, a width, an area and a volume of the object; and

determining whether the object near the cargo bed is an object which is likely to fall from the cargo bed or an object which is falling from the cargo bed based on the calculation result.

12. A falling object determination device configured to be mounted to an own vehicle, comprising:

a processor;

a non-transitory computer-readable storage medium; and

a set of computer-executable instructions stored on the non-transitory computer-readable storage medium that cause the processor to:

acquire, as a first detection signal, information indicating displacement of an object near a cargo bed of a nearby vehicle which travels near the own vehicle;

determine whether at least part of the object near the cargo bed is on the cargo bed;

in response to determining that at least part of the object near the cargo bed is on the cargo bed, calculate, as a calculation result, at least one of a vibration frequency, a vibration amplitude and a size of the object near the cargo bed by using the first detection signal; and

perform a determination whether the object near the cargo bed is an object which is likely to fall from the cargo bed or an object which is falling from the cargo bed based on the calculation result.

13. The falling object determination device according to claim 12 , wherein

determining whether at least part of the object near the cargo bed is on the cargo bed comprises:

detecting a predetermined range around a license plate of the nearby vehicle; and

determining whether at least part of the object is within the predetermined range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2021
From: YOKOYAMA, TAKAHISA; IDO, NORIYUKI
To: DENSO CORPORATION
Reel/Frame 057952/0432 →
Priority Claims (1)
JP 2019-071687 · Apr 4, 2019 · national
Continuity (2)
Continuation PCTJP2020014835 · Mar 31, 2020
Related Publication 20220017085A1 · Jan 20, 2022