IP Library › Granted Patent US 11,818,633
Granted Patent B2
US 11,818,633 · App. 17/220,451 · Granted Nov 14, 2023

Map update system, data transmission device, and data transmission method

Inventor: Ryo Igarashi (Chofu, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
H04W4/38G06F18/211G06F18/22G06F18/254G06V10/809G06V20/588H04W4/44G06V20/56
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Quick Facts
Patent No.
US 11,818,633
App. No.
17/220,451
Granted
Nov 14, 2023
Kind
B2
Abstract

A map update system includes a data transmission device mounted on a vehicle and a map server which stores map data. The data transmission device generates sensor data representing a road environment of surroundings of the vehicle in a predetermined position, calculates a matching degree between the road environment of the surroundings of the vehicle and a road environment in the predetermined position represented by the map data, and causes a communication circuit mounted on the vehicle to transmit the sensor data and information representing the matching degree to the map server. The map server transmits the map data by utilizing sensor data, among the sensor data received via a communication device, having a matching degree less than a matching degree threshold with a higher priority than sensor data having a matching degree or greater than the matching degree threshold.

Claims (20)

1. A map update system, comprising a data transmission device mounted on a vehicle and a map server which stores map data, wherein

the data transmission device comprises a first processor which is configured to:

generate sensor data representing a road environment of surroundings of the vehicle in a predetermined position based on a signal generated by a sensor mounted on the vehicle,

calculate a matching degree between the road environment of the surroundings of the vehicle represented by the sensor data and a road environment in the predetermined position represented by the map data, and

transmit the sensor data and information representing the matching degree to the map server, and

the map server comprises:

a second processor which is configured to update the map data by utilizing first sensor data at a higher priority than second sensor data based on the first sensor data having a first matching degree less than a matching degree threshold and the second sensor data having a second matching degree greater than or equal to the matching degree threshold, wherein the first sensor data and second sensor data are among the sensor data received from the data transmission device, and wherein the a respective matching degree of a respective sensor data is based on a flag indicating that respective sensor feature identified by the respective sensor data is from within a respective predetermined area range.

2. The map update system according to claim 1 , wherein the processor of the map server is further configured to update the map data so that a necessary update time elapsing from when the sensor data for the first sensor data is received to when it is used for updating the map data is shorter than the necessary update time for the second sensor data.

3. The map update system according to claim 1 , wherein the map server further comprises a memory, and the processor of the map server is further configured to store the first sensor data in the memory during a first storage period and store the second sensor data in the memory during a second storage period, which is shorter than the first storage period.

4. The map update system according to claim 1 , wherein the processor of the map server is further configured to: update the map data using the received first sensor data, and update the map data using the second sensor data when the number of sets of received third sensor data representing the road environment common in the road environment of the surroundings of the vehicle represented by the received second sensor data, among the sensor data, exceeds a numerical threshold.

5. The map update system according to claim 1 , wherein the processor of the map server is further configured to execute, for the first sensor data, a first process, which is a part of a predetermined preprocess executed for the sensor data, from the reception of the first sensor data to the update of the map data, and execute a second process different from the first process in the predetermined preprocess after updating the map data, and execute, for the second sensor data, the first process and the second process from the reception of the second sensor data to the update of the map data.

6. The map update system according to claim 1 , wherein the sensor is a camera which generates an image in which an environment of the surroundings of the vehicle is represented as the signal, and the processor of the data transmission device is further configured to: generate sensor feature data as the sensor data in which a feature identified by a classifier for identifying predetermined features from the image is represented as the road environment of the surroundings of the vehicle, and calculate a matching degree between the sensor feature data and map feature data in which a feature is represented as the road environment in the predetermined position represented by the map data as the matching degree.

7. A data transmission device, comprising a processor configured to:

generate sensor data representing a road environment of surroundings of a vehicle in a predetermined position based on a signal generated by a sensor mounted on the vehicle,

calculate a matching degree between the road environment of the surroundings of the vehicle represented by the sensor data and a road environment in the predetermined position represented by map data stored in a map server in association with a position, and

cause a communication circuit, mounted on the vehicle and capable of communication via a first line and communication via a second line having a narrower bandwidth than a bandwidth of the first line, to, based on a first sensor data having a first matching degree less than a matching degree threshold and a second sensor data having a second matching degree greater than or equal to the matching degree threshold, transmit the first sensor data, via the first line, at a higher priority than the second sensor data, wherein the first sensor data and second sensor data are among the sensor data received from the data transmission device, and wherein the a respective matching degree of a respective sensor data is based on a flag indicating that respective sensor feature identified by the respective sensor data is from within a respective predetermined area range.

8. A data transmission method, comprising:

generating sensor data representing a road environment of surroundings of a vehicle in a predetermined position based on a signal generated by a sensor mounted on the vehicle,

calculating a matching degree between the road environment of the surroundings of the vehicle represented by the sensor data and a road environment in the predetermined position represented by map data stored in a map server in association with a position, and

causing a communication circuit mounted on the vehicle and capable of executing communication via a first line and communication via a second line having a narrower bandwidth than a bandwidth of the first line, to, based on a first sensor data having a first matching degree less than a matching degree threshold and a second sensor data having a second matching degree greater than or equal to the matching degree threshold, transmit the first sensor data via the first line, at a higher priority than the second sensor data, wherein the first sensor data and second sensor data are among the sensor data received from the data transmission device, and wherein the a respective matching degree of a respective sensor data is based on a flag indicating that respective sensor feature identified by the respective sensor data is from within a respective predetermined area range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2021
From: IGARASHI, RYO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 055800/0394 →
Priority Claims (1)
JP 2020-068650 · Apr 6, 2020 · national
Continuity (1)
Related Publication 20210312228A1 · Oct 7, 2021