IP Library Granted Patent US 12,530,381
Granted Patent B2
US 12,530,381 · App. 17/971,246 · Granted Jan 20, 2026

Determining autonomous vehicle status based on mapping of crowdsourced object data

Inventor: Gil Golov (Backnang, DE)
G06F16/29G01C21/30G01C21/3602G01C21/3614G05D1/0088G05D1/246G05D1/2462G05D1/81G06V20/56G06V20/58G06V20/582G06V20/584G06V20/588G06N3/02G06N3/048G06N3/08G06N20/00
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Quick Facts
Patent No.
US 12,530,381
App. No.
17/971,246
Filed
Oct 21, 2022
Granted
Jan 20, 2026
Kind
B2
Art Unit
3662
USPC
701/532
Abstract

A map in a cloud service stores physical objects previously detected by other vehicles that have previously traveled over the same road that a current vehicle is presently traveling on. New data received by the cloud service from the current vehicle regarding new objects that are being encountered by the current vehicle can be compared to the previous object data stored in the map. Based on this comparison, an operating status of the current vehicle is determined. In response to determining the status, an action such as terminating an autonomous navigation mode of the current vehicle is performed.

Claims (42)

1 . A system comprising:

at least one memory of a first vehicle; and

at least one processor of the first vehicle, wherein the processor is coupled to the memory;

wherein the system is configured to:

receive, by the first vehicle, data regarding objects, each object detected by a sensor of at least one of a plurality of vehicles;

store, based on the received data, a map including the detected objects, each of the detected objects associated with a respective location;

collect, by the first vehicle, first data regarding a detected object, and second data other than object data;

determine, using the second data in combination with comparing the first data to the map, a detection failure associated with reliability of a first system of the first vehicle; and

in response to determining the detection failure, perform, by the first vehicle, at least one action regarding the first system.

2 . The system of claim 1 , wherein the data regarding objects is received from a server, and the server is configured to communicate the data regarding objects to vehicles other than the first vehicle.

3 . The system of claim 2 , wherein the other vehicles include a second vehicle that collects and sends data to the server.

4 . The system of claim 1 , wherein a first object of the detected objects is a physical structure.

5 . The system of claim 4 , wherein the physical structure is a traffic sign or a road lane.

6 . The system of claim 1 , wherein the system further comprises a machine learning model, and the first data is an input to the machine learning model.

7 . The system of claim 1 , wherein:

the data regarding objects is received from a server over a communication network; and

the system is further configured to package the first data as compressed data, and communicate the compressed data to the server.

8 . The system of claim 1 , wherein the detection failure is a failure to detect an object.

9 . The system of claim 1 , wherein the first data fails to match stored data for the map for at least one object.

10 . The system of claim 1 , wherein the detection failure includes a failure to match within a predetermined tolerance.

11 . The system of claim 1 , wherein determining the detection failure is further based on comparing the first data to output from a machine learning model.

12 . The system of claim 1 , further comprising a communication interface, wherein:

the data regarding objects is received by the communication interface from a server; and

the system is further configured to communicate the first data to the server using the communication interface.

13 . The system of claim 1 , wherein the processor is a computing device mounted on or within the first vehicle, and wherein the mounted computing device includes at least one of a controller or an in-memory processing device.

14 . The system of claim 1 , wherein the at least one action includes at least one of:

deactivating an autonomous driving mode;

activating a backup navigation device of the first vehicle;

controlling at least one of steering, braking, acceleration, seat position, window status, or driving style;

controlling at least one system of the first vehicle;

controlling an infotainment system of the first vehicle; or

controlling a communication device of the first vehicle.

15 . The system of claim 1 , wherein the system is further configured to:

update the map with the first data; and

wirelessly communicate the updated map to a server, wherein the server is configured to communicate the updated map to vehicles other than the first vehicle.

16 . The system of claim 1 , wherein the first data comprises data from at least one sensor in the first vehicle.

17 . A method comprising:

receiving, by a first vehicle, map data regarding objects, each object detected by a respective one of a plurality of vehicles other than the first vehicle;

collecting, by the first vehicle, first sensor data regarding at least one object and second sensor data regarding temperature;

determining, based on the second sensor data and comparing the first sensor data to the map data, an operating status of the first vehicle; and

in response to determining the operating status, performing at least one action by the first vehicle.

18 . The method of claim 17 , wherein determining the operating status comprises determining a mismatch between the first sensor data and the map data.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2025
From: MICRON TECHNOLOGY, INC.
To: LODESTAR LICENSING GROUP LLC
Reel/Frame 072410/0259 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2022
From: GOLOV, GIL
To: MICRON TECHNOLOGY, INC.
Reel/Frame 061502/0312 →
Continuity (3)
Continuation 17216351 · Mar 29, 2021
Continuation 15951087 · Apr 11, 2018
Related Publication 20230041045A1 · Feb 9, 2023
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