IP Library › Granted Patent US 11,062,597
Granted Patent B2
US 11,062,597 · App. 15/809,848 · Granted Jul 13, 2021

Intersection information distribution apparatus and intersection information distribution method

Inventors: Naganori Shirakata (Kanagawa, JP); Koji Takinami (Kanagawa, JP); Kenichi Ono (Hyogo, JP); Noboru Yamamoto (Tokyo, JP)
Assignee: Panasonic Intellectual Property Corporation of America
G08G1/04G06K9/00785G08G1/0112G08G1/0116G08G1/0141G08G1/0145G08G1/09675G08G1/096716G08G1/096741G08G1/096783H04B7/0617H04W84/00H04B7/0695H04B7/088
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Quick Facts
Patent No.
US 11,062,597
App. No.
15/809,848
Granted
Jul 13, 2021
Kind
B2
Abstract

An intersection information distribution apparatus includes a plurality of image capturers, one or more first wireless communicators, a position estimator, and a controller. The plurality of image capturers capture images in and around an intersection. The one or more first wireless communicators perform directional communication with a second wireless communicator mounted on a vehicle. The position estimator estimates a position of the vehicle in and around the intersection from a communication state of the directional communication. The controller selects a piece of data from among pieces of data of the images captured by the plurality of image capturers on the basis of the estimated position of the vehicle. The one or more first wireless communicators transmit the selected piece of data to the second wireless communicator of the vehicle.

Claims (55)

1. An apparatus comprising:

capturing devices configured to capture images in and around an intersection, the capturing devices being one of video cameras, radars, or sensors;

one or more first millimeter-wave communicators configured to perform directional communication with a second millimeter-wave communicator mounted on a vehicle using a directional beam;

a first low-speed communicator configured to perform communication with a second low-speed communicator mounted on the vehicle using a beam that covers the intersection and a wider area than the one or more first millimeter-wave communicators; and

a circuit configured to:

estimate, in response to the second low-speed communicator mounted on the vehicle detecting entry of the vehicle into the intersection, a position of the vehicle in and around the intersection on a basis of a communication state of the directional beam used in the directional communication; and

select a piece of data from among pieces of data corresponding to the images captured by the capturing devices on a basis of the estimated position of the vehicle, wherein

the one or more first millimeter-wave communicators transmit the selected piece of data to the second millimeter-wave communicator mounted on the vehicle.

2. The apparatus according to claim 1 , wherein the circuit is configured to estimate the position of the vehicle on a basis of a direction of the directional beam used in the directional communication.

3. The apparatus according to claim 1 , wherein the capturing devices capture images of different areas in and around the intersection.

4. The apparatus according to claim 1 , wherein

in a case where the estimated position of the vehicle is in a corner of the intersection for making a left-hand turn, the selected piece of data corresponds to an area in a left rear of the vehicle and to an area in a right rear of the vehicle, and

in a case where the estimated position of the vehicle is at a center of the intersection for making a right-hand turn, the selected piece of data corresponds to an area behind another vehicle in an opposite lane of the vehicle and to an area right of the vehicle.

5. The apparatus according to claim 1 , wherein the circuit is configured to estimate the position of the vehicle in and around the intersection based on at least one of a strength, a signal-to-noise ratio (SNR), or a signal-to-interference-plus-noise ratio (SINR) of the direction beam.

6. The apparatus according to claim 1 , wherein:

the circuit is further configured to:

determine a lane in which the vehicle is present and a direction of travel in and around the intersection from the estimated position of the vehicle; and

determine one or more blind-spot areas of the vehicle on a basis of a result of the determination of the lane and the direction of travel, and

the selecting includes selecting the piece of data from among pieces of data corresponding to the images that are capturing images of the one or more blind-spot areas on a basis of a result of the determination of the one or more blind-spot areas.

7. A method comprising:

capturing, by a plurality of image capturers, images in and around an intersection;

performing, by one or more first millimeter-wave communicators, directional communication with a second millimeter-wave communicator mounted on a vehicle using a directional beam;

performing, by a first low-speed communicator, communication with a second low-speed communicator mounted on the vehicle using a beam that covers the intersection and a wider area than the one or more first millimeter-wave communicators;

estimating, in response to the second low-speed communicator mounted on the vehicle detecting entry of the vehicle into the intersection, a position of the vehicle in and around the intersection on a basis of a communication state of the directional beam used in the directional communication;

selecting a piece of data from among pieces of data corresponding to the images captured by the plurality of image capturers on a basis of the estimated position of the vehicle; and

transmitting, by the one or more first millimeter-wave communicators, the selected piece of data to the second millimeter-wave communicator of the vehicle.

8. The method according to claim 7 , wherein estimating the position of the vehicle includes estimating the position of the vehicle on a basis of a direction of the directional beam used in the directional communication.

9. The method according to claim 7 , wherein

the pieces of data corresponding to the images captured by the plurality of image capturers are pieces of data of images of different areas in and around the intersection.

10. The method according to claim 7 , wherein

in a case where the estimated position of the vehicle is in a corner of the intersection for making a left-hand turn, the selected piece of data corresponds to an area in a left rear of the vehicle and to an area in a right rear of the vehicle, and

in a case where the estimated position of the vehicle is at a center of the intersection for making a right-hand turn, the selected piece of data corresponds to an area behind another vehicle in an opposite lane of the vehicle and to an area right of the vehicle.

11. The method according to claim 7 further comprising:

determining a lane in which the vehicle is present and a direction of travel in and around the intersection from the estimated position of the vehicle; and

determining one or more blind-spot areas of the vehicle on a basis of a result of the determination of the lane and the direction of travel, wherein

the selecting includes selecting the piece of data from among pieces of data corresponding to the images that are capturing images of the one or more blind-spot areas on a basis of a result of the determination of the one or more blind-spot areas.

12. An apparatus comprising:

capturing devices configured to capture images in and around an intersection, the capturing devices being one of video cameras, radars, or sensors;

one or more first millimeter-wave communicators configured to perform directional communication with a second millimeter-wave communicator mounted on a vehicle using a directional beam;

a first low-speed communicator configured to perform communication with a second low-speed communicator mounted on the vehicle using a beam that covers the intersection and a wider area than the one or more first millimeter-wave communicators;

a processor; and

a non-transitory recording medium storing thereon a computer program, which when executed by the processor, causes the processor to:

estimate, in response to the second low-speed communicator mounted on the vehicle detecting entry of the vehicle into the intersection, a position of the vehicle in and around the intersection on a basis of a communication state of the directional beam used in the directional communication; and

select a piece of data from among pieces of data corresponding to the images captured by the capturing devices on a basis of the estimated position of the vehicle,

wherein the one or more first millimeter-wave communicators transmit the selected piece of data to the second millimeter-wave communicator mounted on the vehicle.

13. The apparatus according to claim 12 , wherein the position of the vehicle is estimated based on a direction of the directional beam used in the directional communication.

14. The apparatus according to claim 12 , wherein the capturing devices capture images of different areas in and around the intersection.

15. The apparatus according to claim 12 , wherein

in a case where the estimated position of the vehicle is in a corner of the intersection for making a left-hand turn, the selected piece of data corresponds to an area in a left rear of the vehicle and to an area in a right rear of the vehicle, and

in a case where the estimated position of the vehicle is at a center of the intersection for making a right-hand turn, the selected piece of data corresponds to an area behind another vehicle in an opposite lane of the vehicle and to an area in right of the vehicle.

16. The apparatus according to claim 12 , wherein:

the computer program, which when executed by the processor, further causes the processor to:

determine a lane in which the vehicle is present and a direction of travel in and around the intersection from the estimated position of the vehicle; and

determine one or more blind-spot areas of the vehicle on a basis of a result of the determination of the lane and the direction of travel, and

the selecting includes selecting the piece of data from among pieces of data corresponding to the images that are capturing images of the one or more blind-spot areas on a basis of a result of the determination of the one or more blind-spot areas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2018
From: SHIRAKATA, NAGANORI; TAKINAMI, KOJI; ONO, KENICHI; YAMAMOTO, NOBORU
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 044579/0169 →
Priority Claims (1)
JP JP2016-225921 · Nov 21, 2016 · national
Continuity (1)
Related Publication 20180144623A1 · May 24, 2018
Cited By (1)
US 12,638,857