IP Library › Granted Patent US 11,650,067
Granted Patent B2
US 11,650,067 · App. 16/505,508 · Granted May 16, 2023

System and method for reducing route time using big data

Inventors: Fanuel Zekiros (Addison, TX); Gagandeep Singh Saini (Plano, TX); Katherine L. Naiser (Plano, TX); Mathew D. Gardner (Lewisville, TX)
Assignee: TOYOTA MOTOR NORTH AMERICA, INC.
G01C21/3492G01C21/3484G01C21/3694G08G1/096775
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Quick Facts
Patent No.
US 11,650,067
App. No.
16/505,508
Granted
May 16, 2023
Kind
B2
Abstract

Methods and systems for navigating a vehicle. The system includes an input/output device of the vehicle configured to receive a destination from a user of the vehicle. The system also includes a transceiver of the vehicle configured to receive traffic data and traffic light timing data of traffic lights between a current location of the vehicle and the destination. The system also includes an electronic control unit (ECU) of the vehicle configured to determine one or more routes from the current location to the destination based on the traffic data and the traffic light timing data.

Claims (41)

1. A system for navigating a vehicle, the system comprising:

an input/output device on the vehicle configured to receive data indicative of a destination from a user of the vehicle and display an output;

a transceiver on the vehicle configured to receive traffic data and traffic light timing data of one or more traffic lights between a current location of the vehicle and the destination; and

an electronic control unit (ECU) on the vehicle coupled to the input/output device and the transceiver and configured to:

determine one or more routes from the current location of the vehicle to the destination based on the traffic data and the traffic light timing data,

determine that the user may save time greater than a threshold time saving value by delaying departure from the current location of the vehicle to the destination by a prescribed time period based on the traffic data and the traffic light timing data,

prompt the input/output device to display an icon or a notification when the time to be saved is greater than the threshold time saving value, and

control the vehicle to traverse to the destination via at least one of the one or more routes following the delay of the departure by the prescribed time period.

2. The system of claim 1 , wherein the transceiver is further configured to receive at least a portion of the traffic light timing data from at least a traffic light having a memory configured to store at least the portion of the traffic light timing data and a transceiver configured to communicate at least the portion of the traffic light timing data to the transceiver on the vehicle.

3. The system of claim 1 , wherein the transceiver is further configured to receive at least a portion of the traffic light timing data from at least a remote data server having a memory configured to store at least the portion of the traffic light timing data and a transceiver configured to communicate at least the portion of the traffic light timing data to the transceiver on the vehicle.

4. The system of claim 1 , wherein the input/output device is further configured to display a traffic light icon and a timer associated with a traffic light in front of the vehicle and showing a current state of the traffic light and a time remaining of the current state of the traffic light.

5. The system of claim 1 , wherein the ECU is further configured to determine a driving routine of the vehicle based on vehicle telemetry data, the driving routine having a starting location, a destination, and a time range of departure and determine an optimal route between the starting location included in the driving routine and the destination included in the driving routine and an optimal time for departure from the starting location included in the driving routine to the destination included in the driving routine based on traffic light timing data of traffic lights between the starting location included in the driving routine and the destination included in the driving routine, and

wherein the input/output device is further configured to display the optimal route and the optimal time for departure.

6. The system of claim 1 , wherein the traffic light timing data changes over time, and wherein the transceiver on the vehicle is further configured to receive updated traffic light timing data on a periodic basis.

7. The system of claim 1 , wherein the traffic light timing data is based on a combination of timing data received from the one or more traffic lights, traffic light patterns determined based on vehicle telemetry data, and timing data received from a municipality.

8. A system for navigating a vehicle, the system comprising:

an input/output device configured to receive data indicative of a destination from a user of the vehicle and display an output;

a location sensor configured to detect a current location of the vehicle;

a memory on or within a remote data server configured to store traffic data and traffic light timing data of one or more traffic lights between the current location of the vehicle and the destination;

a processor on or within the remote data server connected to the input/output device, the location sensor, and the memory and configured to:

determine one or more routes from the current location of the vehicle to the destination based on the traffic data and the traffic light timing data,

determine that the user may save time greater than a threshold time saving value by delaying departure from the current location of the vehicle to the destination by a prescribed time period based on the traffic data and the traffic light timing data,

prompt the input/output device to display an icon or a notification when the time to be saved is greater than the threshold time saving value, and

control the vehicle to traverse to the destination via at least one of the one or more routes following the delay of the departure by the prescribed time period; and

a transceiver on the remote data server connected to the processor and configured to receive data indicative of the current location of the vehicle and the data indicative of the destination and communicate information including the determined one or more routes from the current location of the vehicle to the destination to a transceiver on the vehicle.

9. The system of claim 8 , wherein the transceiver on the remote data server is further configured to receive at least a portion of the traffic light timing data from at least a traffic light having a memory configured to store at least the portion of the traffic light timing data and a transceiver configured to communicate at least the portion of the traffic light timing data to the transceiver on the remote data server.

10. The system of claim 8 , wherein the input/output device is further configured to display a traffic light icon and a timer associated with a traffic light in front of the vehicle and showing a current state of the traffic light and a time remaining of the current state of the traffic light.

11. The system of claim 8 , wherein the processor is further configured to determine a driving routine of the vehicle based on vehicle telemetry data, the driving routine having a starting location, a destination, and a time range of departure and determine an optimal route between the starting location included in the driving routine and the destination included in the driving routine and an optimal time for departure from the starting location included in the driving routine to the destination included in the driving routine based on traffic light timing data of traffic lights between the starting location included in the driving routine and the destination included in the driving routine, and

wherein the input/output device is further configured to display the optimal route and the optimal time for departure.

12. The system of claim 8 , wherein the traffic light timing data changes over time, and wherein the transceiver on the remote data server is further configured to receive updated traffic light timing data on a periodic basis.

13. The system of claim 8 , wherein the traffic light timing data is based on a combination of timing data received from the one or more traffic lights, traffic light patterns determined based on vehicle telemetry data, and timing data received from a municipality.

14. A method for navigating a vehicle, the method comprising:

receiving, by an input/output device, data indicative of a destination from a user of the vehicle;

detecting, by a location sensor, a current location of the vehicle;

storing, by a memory, traffic data and traffic light timing data of one or more traffic lights between the current location of the vehicle and the destination;

determining, by an electronic control unit (ECU) coupled to the input/output device, the location sensor, and the memory, one or more routes from the current location of the vehicle to the destination based on the traffic data and the traffic light timing data;

determining, by the ECU, that the user may save time greater than a threshold time saving value by delaying departure from the current location of the vehicle to the destination by a prescribed time period based on the traffic data and the traffic light timing data;

displaying, by the input/output device, an icon or a notification when the time to be saved is greater than the threshold time saving value; and

controlling, by the ECU, the vehicle to traverse to the destination via at least one of the one or more routes following the delay of the departure by the prescribed time period.

15. The method of claim 14 , further comprising receiving, by a transceiver coupled to the ECU, at least a portion of the traffic light timing data from at least one traffic light.

16. The method of claim 14 , further comprising displaying, by the input/output device, a traffic light icon and a timer associated with a traffic light in front of the vehicle and showing a current state of the traffic light and a time remaining of the current state of the traffic light.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2024
From: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 067019/0768 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2019
From: ZEKIROS, FANUEL; SAINI, GAGANDEEP SINGH; NAISER, KATHERINE L.; GARDNER, MATHEW D.
To: TOYOTA MOTOR NORTH AMERICA, INC.
Reel/Frame 049692/0623 →
Continuity (1)
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