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US20220263903A1 - Highly Assisted Driving Platform - Google Patents

Highly Assisted Driving Platform
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Publication number
US20220263903A1
US20220263903A1US17/734,871US202217734871AUS2022263903A1US 20220263903 A1US20220263903 A1US 20220263903A1US 202217734871 AUS202217734871 AUS 202217734871AUS 2022263903 A1US2022263903 A1US 2022263903A1
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sensors
vehicle
data
sensor data
telematics sensor
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US17/734,871
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Leon Oliver Stenneth
Vladimir Boroditsky
Leo Modica
Gavril Adrian Giurgiu
James Adeyemi Fowe
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Here Global BV
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Here Global BV
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Abstract

Methods for providing a highly assisted driving (HAD) service include: (a) transmitting telematics sensor data from a vehicle to a remote first server; (b) transmitting at least a portion of the telematics sensor data from the remote first server to a remote second server, wherein the remote second server is configured to execute a HAD application using received telematics sensor data, and wherein the HAD application is configured to output a HAD service result; and (c) transmitting the HAD service result from the remote second server to a client. Apparatuses for providing a HAD service are described.

Description

Claims (20)

We claim:
1. A method comprising:
receiving, by a processor, telematics sensor data collected at a first vehicle;
executing a highly assisted driving (HAD) application using the received telematics sensor data; and
sending a HAD service result from the HAD application to a second vehicle.
2. The method ofclaim 1, wherein the HAD service result includes an autonomous driving command for operation of the second vehicle.
3. The method ofclaim 1, wherein the second vehicle is configured to make an operational adjustment based on the HAD service result.
4. The method ofclaim 1, wherein the telematics sensor data is acquired from one or more a plurality of telematics sensors onboard the first vehicle.
5. The method ofclaim 3, wherein the one or more telematics sensors are configured to collect the telematics sensor data are selected from the group consisting of differential global positioning system (GPS), windshield wiping sensors, laser sensors, light sensors, camera sensors, microphone sensors, shift sensors, pedal sensors, lever sensors, brake sensors, speed sensors, acceleration sensors, headlamp sensors, steering wheel sensors, and combinations thereof.
6. The method ofclaim 1, wherein pre-processing is performed on at least a portion of the telematics sensor data at the first vehicle prior to transmitting of the telematics sensor data.
7. The method ofclaim 6, wherein the pre-processing comprises data filtering, data anonymization, data compression, data enveloping, or a combination thereof.
8. The method ofclaim 1, further comprising:
determining whether at least a portion of the telematics sensor data satisfies a predefined latency threshold prior to using the received telematics sensor data as an input to the HAD application.
9. The method ofclaim 1, wherein the HAD application is selected from the group consisting of autonomous driving, personalized driving of autonomous vehicles, collision warning systems, early warning systems, adverse weather conditions warning systems, lane departure warning systems, telematics sensor analytics, automobile app stores, cruise control, and combinations thereof.
10. A method comprising:
transmitting, by a processor, telematics sensor data from a vehicle to a remote server, wherein the remote server is configured to execute a highly assisted driving (HAD) application using the telematics sensor data, and wherein the HAD application is configured to output a HAD service result; and
transmitting, by a processor, the HAD service result from the remote server to a client, wherein the client is configured to make an operational adjustment based on the HAD service result.
11. The method ofclaim 10, wherein the HAD service result includes an autonomous driving command.
12. The method ofclaim 10, wherein the HAD service result includes a course adjustment.
13. The method ofclaim 10, wherein the telematics sensor data is collected by differential global positioning system (GPS), windshield wiping sensors, laser sensors, light sensors, camera sensors, microphone sensors, shift sensors, pedal sensors, lever sensors, brake sensors, speed sensors, acceleration sensors, headlamp sensors, steering wheel sensors, or combinations thereof.
14. An apparatus comprising:
at least one processor; and
at least one memory including computer program code for one or more programs, the at least one memory and the computer program code configured to, with the at least one processor, cause the apparatus to perform at least the following:
receiving, by a processor, telematics sensor data collected at a first vehicle;
executing a highly assisted driving (HAD) application using the received telematics sensor data; and
sending a HAD service result from the HAD application to a second vehicle.
15. The apparatus ofclaim 14, wherein the HAD service result includes an autonomous driving command.
16. The apparatus ofclaim 14, wherein the second vehicle is configured to make an operational adjustment based on the HAD service result.
17. The apparatus ofclaim 14, wherein the telematics sensor data is acquired from one or more of a plurality of telematics sensors onboard the first vehicle.
18. The apparatus ofclaim 17, wherein the one or the plurality of telematics sensors is selected from the group consisting of differential global positioning system (GPS), windshield wiping sensors, laser sensors, light sensors, camera sensors, microphone sensors, shift sensors, pedal sensors, lever sensors, brake sensors, speed sensors, acceleration sensors, headlamp sensors, steering wheel sensors, and combinations thereof.
19. The apparatus ofclaim 18, wherein data filtering, data anonymization, data compression, data enveloping, or a combination thereof is performed at the first vehicle.
20. The apparatus ofclaim 14, wherein the HAD application is selected from the group consisting of autonomous driving, personalized driving of autonomous vehicles, collision warning systems, early warning systems, adverse weather conditions warning systems, lane departure warning systems, telematics sensor analytics, automobile app stores, cruise control, and combinations thereof.
US17/734,8712014-07-232022-05-02Highly Assisted Driving PlatformAbandonedUS20220263903A1 (en)

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US17/734,871US20220263903A1 (en)2014-07-232022-05-02Highly Assisted Driving Platform

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US14/338,957US9628565B2 (en)2014-07-232014-07-23Highly assisted driving platform
US15/460,693US10334049B2 (en)2014-07-232017-03-16Highly assisted driving platform
US16/411,834US11343316B2 (en)2014-07-232019-05-14Highly assisted driving platform
US17/734,871US20220263903A1 (en)2014-07-232022-05-02Highly Assisted Driving Platform

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US16/411,834ContinuationUS11343316B2 (en)2014-07-232019-05-14Highly assisted driving platform

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US20220263903A1true US20220263903A1 (en)2022-08-18

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US14/338,957ActiveUS9628565B2 (en)2014-07-232014-07-23Highly assisted driving platform
US15/460,693Active2035-01-27US10334049B2 (en)2014-07-232017-03-16Highly assisted driving platform
US16/411,834Active2036-02-15US11343316B2 (en)2014-07-232019-05-14Highly assisted driving platform
US17/734,871AbandonedUS20220263903A1 (en)2014-07-232022-05-02Highly Assisted Driving Platform

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US14/338,957ActiveUS9628565B2 (en)2014-07-232014-07-23Highly assisted driving platform
US15/460,693Active2035-01-27US10334049B2 (en)2014-07-232017-03-16Highly assisted driving platform
US16/411,834Active2036-02-15US11343316B2 (en)2014-07-232019-05-14Highly assisted driving platform

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US (4)US9628565B2 (en)
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US11343316B2 (en)2022-05-24
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