IP Library Granted Patent US 10,216,194
Granted Patent B1
US 10,216,194 · App. 15/798,093 · Granted Feb 26, 2019

Using emergency response system (EMS) vehicle telematics data to reduce accident risk

Inventor: Gregory Hayward (Bloomington, IL)
Assignee: STATE FARM MUTUAL AUTOMOBILE INSURANCE COMPANY
G05D1/0278G01C21/3415G01C21/3492G01S19/47G01S19/51G06Q40/08G08G1/0125G08G1/127
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,216,194
App. No.
15/798,093
Granted
Feb 26, 2019
Kind
B1
Abstract

A computer system configured to use emergency response system (EMS) vehicle telematics data to reduce risk of accidents may be configured to (1) receive, when the EMS vehicle is en route to an emergency location, the EMS vehicle telematics data associated with the EMS vehicle and including GPS location, speed, route, heading, acceleration, and/or lane data; (2) determine that a current route of an autonomous vehicle will interfere with the route of the EMS vehicle; (3) determine an alternate route for the autonomous vehicle to avoid interfering with the route of the EMS vehicle; and (4) direct the autonomous vehicle to (i) travel along the alternate route or (ii) pull over to a side of a road on the current route to allow the EMS vehicle to pass unimpeded. Insurance discounts may be generated based upon the risk mitigation or prevention functionality.

Claims (38)

1. A computer system configured to use emergency response system (EMS) vehicle telematics data to reduce accident risk, the computer system comprising:

at least one of one or more processors or one or more transceivers, the at least one of the one or more processors or the one or more transceivers located on or within an autonomous vehicle, the at least one of the one or more processors or the one or more transceivers configured to:

receive, at the autonomous vehicle via wireless communication or data transmission, the EMS vehicle telematics data associated with an EMS vehicle, the EMS vehicle telematics data including location data and at least one of acceleration data or deceleration data;

determine, at the autonomous vehicle based upon the EMS vehicle telematics data, whether a current route of the autonomous vehicle will interfere with a route of the EMS vehicle to an emergency location;

determine, at the autonomous vehicle based upon a relevance of the EMS vehicle, an alternate route for the autonomous vehicle to take to avoid interfering with the route of the EMS vehicle to the emergency location, the relevance of the EMS vehicle being based upon whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle to the emergency location;

direct, based upon the relevance of the EMS vehicle, the autonomous vehicle to one of (1) travel along the alternate route, or (2) pull over to a side of a road on the current route of the autonomous vehicle to allow the EMS vehicle to pass the autonomous vehicle; and

cause an insurance provider remote server to at least one of display, adjust, or generate an insurance discount associated with the autonomous vehicle based upon the autonomous vehicle including risk mitigation or prevention functionality associated with (1) receiving the EMS vehicle telematics data, and (2) directing corrective actions based upon the relevance of the EMS vehicle, so as to incentivize the insured customer to facilitate avoidance of collisions and safe travel for the EMS vehicle.

2. The computer system of claim 1 , wherein the at least one of the one or more processors or the one or more transceivers are configured to determine whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle further based upon telematics data associated with the autonomous vehicle.

3. The computer system of claim 2 , wherein the telematics data associated with the autonomous vehicle includes at least one of location, acceleration, deceleration, braking, cornering, direction, heading, left turn, right turn, speed, lane, or gyroscope data associated with the autonomous vehicle.

4. The computer system of claim 1 , wherein the at least one of the one or more processors or the one or more transceivers are configured to determine whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle to the emergency location based upon at least one of (1) at least one of the location data or the at least one of the acceleration data or the deceleration data, or (2) comparison via the one or more processors of (i) the at least one of the location data or the at least one of the acceleration data or the deceleration data with (ii) at least one of a current time or at least one of location data, speed data, direction data, heading data, or route data associated with the autonomous vehicle.

5. The computer system of claim 1 , wherein the EMS vehicle telematics data includes one or more of time, braking, cornering, direction, heading, left turn, right turn, speed, lane, GPS (Global Positioning System) latitude and longitude, gyroscope, battery level, or telephone usage data associated with the EMS vehicle.

6. The computer system of claim 1 , further comprising the insurance provider remote server, wherein the at least one of the one or more processors or the one or more transceivers are configured to send an indication to the insurance provider remote server that the autonomous vehicle includes the risk mitigation or prevention functionality associated with (1) receiving the EMS vehicle telematics data, and (2) directing the corrective actions based upon the relevance of the EMS vehicle, so as to cause the insurance provider remote server to at least one of display, adjust, or generate the insurance discount associated with the autonomous vehicle.

7. The computer system of claim 6 , wherein the at least one of the one or more processors or the one or more transceivers are configured to send an indication of an amount of usage of the risk mitigation or prevention functionality to the insurance provider remote server so as to cause the insurance provider remote server to at least one of display, adjust, or generate the insurance discount as a time or mileage usage-based insurance discount.

8. A computer-implemented method of using emergency response system (EMS) vehicle telematics data to reduce accident risk, the method comprising:

receiving, at an autonomous vehicle via at least one of one or more processors or one or more associated transceivers located on or within the autonomous vehicle, via wireless communication or data transmission, the EMS vehicle telematics data associated with an EMS vehicle, the EMS vehicle telematics data including location data and at least one of acceleration data or deceleration data;

determining, at the autonomous vehicle via the one or more processors based upon the EMS vehicle telematics data, whether a current route of the autonomous vehicle will interfere with a route of the EMS vehicle to an emergency location;

determining, at the autonomous vehicle via the one or more processors, based upon a relevance of the EMS vehicle, an alternate route for the autonomous vehicle to take to avoid interfering with the route of the EMS vehicle to the emergency location, the relevance of the EMS vehicle being based upon whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle to the emergency location;

directing, via the one or more processors, based upon the relevance of the EMS vehicle, the autonomous vehicle to one of (1) travel along the alternate route, or (2) pull over to a side of a road on the current route of the autonomous vehicle to allow the EMS vehicle to pass the autonomous vehicle; and

causing, via the at least one of the one or more processors or the one or more associated transceivers, an insurance provider remote server to at least one of display, adjust, or generate an insurance discount associated with the autonomous vehicle based upon the autonomous vehicle including risk mitigation or prevention functionality associated with (1) receiving the EMS vehicle telematics data, and (2) directing corrective actions based upon the relevance of the EMS vehicle, so as to incentivize the insured customer to facilitate avoidance of collisions and safe travel for the EMS vehicle.

9. The computer-implemented method of claim 8 , the method comprising determining, via the one or more processors, whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle further based upon telematics data associated with the autonomous vehicle.

10. The computer-implemented method of claim 9 , wherein the telematics data associated with the autonomous vehicle includes at least one of location, acceleration, deceleration, braking, cornering, direction, heading, left turn, right turn, speed, lane, or gyroscope data associated with the autonomous vehicle.

11. The computer-implemented method of claim 8 , wherein determining, via the one or more processors, whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle is based upon at least one of (1) at least one of the location data or the at least one of the acceleration data or the deceleration data, or (2) comparison via the one or more processors of (i) the at least one of the location data or the at least one of the acceleration data or the deceleration data with (ii) at least one of a current time or at least one of location data, speed data, direction data, heading data, or route data associated with the autonomous vehicle.

12. The computer-implemented method of claim 8 , wherein the EMS vehicle telematics data includes one or more of time, braking, cornering, direction, heading, left turn, right turn, speed, lane, GPS (Global Positioning System) latitude and longitude, gyroscope, battery level, or telephone usage data associated with the EMS vehicle.

13. The computer-implemented method of claim 8 , the method comprising sending, via the at least one of the one or more processors or the one or more associated transceivers, an indication to the insurance provider remote server that the autonomous vehicle includes the risk mitigation or prevention functionality associated with (1) receiving the EMS vehicle telematics data, and (2) directing the corrective actions based upon the relevance of the EMS vehicle, so as to cause the insurance provider remote server to at least one of display, adjust, or generate the insurance discount associated with the autonomous vehicle.

14. The computer-implemented method of claim 13 , the method comprising sending, via the at least one of the one or more processors or the one or more associated transceivers, an indication of an amount of usage of the risk mitigation or prevention functionality to the insurance provider remote server so as to cause the insurance provider remote server to at least one of display, adjust, or generate the insurance discount as a time or mileage usage-based insurance discount.

15. A system of using emergency response system (EMS) vehicle telematics data to reduce accident risk, the system comprising:

an EMS vehicle configured to transmit the EMS vehicle telematics data associated with the EMS vehicle, the EMS vehicle telematics data including location data and at least one of acceleration data or deceleration data;

an autonomous vehicle; and

at least one of one or more processors or one or more transceivers located on or within the autonomous vehicle, the at least one of the one or more processors or the one or more transceivers configured to:

receive, at the autonomous vehicle, the EMS vehicle telematics data;

determine, at the autonomous vehicle based upon the EMS vehicle telematics data, whether a current route of the autonomous vehicle will interfere with a route of the EMS vehicle to an emergency location;

determine, at the autonomous vehicle based upon a relevance of the EMS vehicle, an alternate route for the autonomous vehicle to take to avoid interfering with the route of the EMS vehicle to the emergency location, the relevance of the EMS vehicle being based upon whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle to the emergency location;

direct, based upon the relevance of the EMS vehicle, the autonomous vehicle to one of (1) travel along the alternate route, or (2) pull over to a side of a road on the current route of the autonomous vehicle to allow the EMS vehicle to pass the autonomous vehicle, so as to incentivize the insured customer to facilitate avoidance of collisions and safe travel for the EMS vehicle.

16. The system of claim 15 , wherein the at least one of the one or more processors or the one or more transceivers are configured to determine whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle further based upon telematics data associated with the autonomous vehicle.

17. The system of claim 16 , wherein the telematics data associated with the autonomous vehicle includes at least one of location, acceleration, deceleration, braking, cornering, direction, heading, left turn, right turn, speed, lane, or gyroscope data associated with the autonomous vehicle.

18. The system of claim 15 , wherein the at least one of the one or more processors or the one or more transceivers are configured to determine whether the current route of the autonomous vehicle will interfere with the route of the EMS vehicle to the emergency location based upon at least one of (1) at least one of the location data or the at least one of the acceleration data or the deceleration data, or (2) comparison via the one or more processors of (i) the at least one of the location data or the at least one of the acceleration data or the deceleration data with (ii) at least one of a current time or at least one of location data, speed data, direction data, heading data, or route data associated with the autonomous vehicle.

19. The system of claim 15 , wherein the EMS vehicle telematics data includes one or more of time, braking, cornering, direction, heading, left turn, right turn, speed, lane, GPS (Global Positioning System) latitude and longitude, gyroscope, battery level, or telephone usage data associated with the EMS vehicle.

20. The system of claim 15 , further comprising the insurance provider remote server, wherein the at least one of the one or more processors or the one or more transceivers are configured to send an indication to the insurance provider remote server that the autonomous vehicle includes the risk mitigation or prevention functionality associated with (1) receiving the EMS vehicle telematics data, and (2) directing the corrective actions based upon the relevance of the EMS vehicle, so as to cause the insurance provider remote server to at least one of display, adjust, or generate the insurance discount associated with the autonomous vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2018
From: HAYWARD, GREGORY
To: STATE FARM MUTUAL AUTOMOBILE INSURANCE COMPANY
Reel/Frame 044875/0494 →
Continuity (16)
Continuation 14990209 · Jan 7, 2016
Provisional Application 62250286 · Nov 3, 2015
Provisional Application 62247334 · Oct 28, 2015
Provisional Application 62232035 · Sep 24, 2015
Provisional Application 62232045 · Sep 24, 2015
Provisional Application 62232054 · Sep 24, 2015
Provisional Application 62232050 · Sep 24, 2015
Provisional Application 62232065 · Sep 24, 2015
Provisional Application 62232097 · Sep 24, 2015
Provisional Application 62232083 · Sep 24, 2015
Provisional Application 62232075 · Sep 24, 2015
Provisional Application 62232090 · Sep 24, 2015
Provisional Application 62207561 · Aug 20, 2015
Provisional Application 62204749 · Aug 13, 2015
Provisional Application 62113749 · Feb 9, 2015
Provisional Application 62105468 · Jan 20, 2015
Cited By (9)
US 12,230,158 US 12,257,950 US 12,291,196 US 12,300,113 US 12,300,114 US 12,365,308 US 12,534,072 US 12,597,344 US 12,671,962