IP Library Granted Patent US 11,908,043
Granted Patent B2
US 11,908,043 · App. 18/125,514 · Granted Feb 20, 2024

Vehicular telematic systems and methods for generating interactive animated guided user interfaces

Inventors: Micah Wind Russo (Oakland, CA); Theobolt N. Leung (San Francisco, CA); Gareth Finucane (San Francisco, CA); Kenneth Jason Sanchez (San Francisco, CA)
Assignee: BLUEOWL, LLC
G06T11/001G01C21/3492G01C21/3602G01C21/367G01C21/3626G01C21/3647G01C21/3694G01C21/3697G06F9/453G06F16/29G06F16/9537G06T11/60G06T2200/24
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Quick Facts
Patent No.
US 11,908,043
App. No.
18/125,514
Granted
Feb 20, 2024
Kind
B2
Abstract

Telematics systems and methods are described for generating interactive animated guided user interfaces (GUIs). A telematics cloud platform is configured to receive vehicular telematics data from a telematics device onboard a vehicle. A GUI value compression component determines, based on the vehicular telematics data, a plurality of GUI position values and a plurality of corresponding GUI time values. A geospatial animation app receives the plurality of GUI position values and the plurality of corresponding GUI time values. The geospatial animation app implements an interactive animated GUI that renders a plurality of geospatial graphics or graphical routes on a geographic area map via a display device. The geospatial graphics or graphical routes are rendered to have different visual forms based on differences between respective GUI position values and corresponding GUI time values.

Claims (67)

1. A computer-implemented method for generating an interactive map interface, comprising:

receiving a plurality of position values and a plurality of time values, the plurality of position values and the plurality of time values associated with a vehicular trip traveled by a user on an actual route;

receiving one or more images, wherein each of the one or more images is associated with one of the plurality of position values;

visually rendering, on a display device:

a geographic map; and

one or more geospatial graphics on the geographic map representing the actual route based upon the plurality of position values and the plurality of time values;

receiving, via user interaction with the display device, a user indication of a selected location on a visual representation of the actual route, wherein the selected location is a location associated with one of the plurality of position values having an associated image of the one or more images; and

displaying on the display device the associated image for the selected location.

2. The computer-implemented method of claim 1 , wherein:

the geographic map is rendered to be scrubbable by the user to play back the vehicular trip; and

the one or more images are displayed on the display device during the play back when the play back corresponds to one of the plurality of position values having a first associated image of the one or more images.

3. The computer-implemented method of claim 2 , further comprising rendering a timeline on the display device configured for the user to play back the vehicular trip during a specific time period of the vehicular trip.

4. The computer-implemented method of claim 1 , further comprising:

receiving environment information during the vehicular trip, wherein the environment information is associated with the plurality of position values;

receiving, via user interaction with the display device, a second user indication of a second selected location on the visual representation of the actual route, wherein the second selected location is a second location associated with one of the plurality of position values having associated environment information; and

displaying on the display device the environment information associated with the selected location.

5. The computer-implemented method of claim 1 , further comprising:

receiving, via user interaction with the display device, a user indication of a geographic stop destination on the visual representation of the actual route;

receiving an image associated with the geographic stop destination; and

displaying on the display device the image associated with the geographic stop destination.

6. The computer-implemented method of claim 1 , further comprising rendering an animation representing the vehicular trip in a chronologic order on the geographic map based upon the plurality of position values and the plurality of time values.

7. The computer-implemented method of claim 1 , wherein receiving the one or more images comprises receiving one or more trip images taken during the vehicular trip.

8. The computer-implemented method of claim 1 , wherein receiving the one or more images comprises receiving one or more taken images taken by the user of the display device.

9. The computer-implemented method of claim 1 , further comprising:

receiving vehicle status information of a vehicle used for the vehicular trip during the vehicular trip, wherein the vehicle status information is associated with the plurality of position values;

receiving, via user interaction with the display device, a third user indication of a third selected location on the visual representation of the actual route, wherein the third selected location is a third location associated with one of the plurality of position values having associated vehicle status information; and

displaying on the display device the vehicle status information associated with the selected location.

10. The computer-implemented method of claim 1 , wherein:

visually rendering the one or more geospatial graphics representing the actual route comprises visually rendering a plurality of graphical routes representing a plurality of actual routes based upon the plurality of position values and the plurality of time values, each graphical route of the plurality of graphical routes being rendered with a frequency indicator representing a frequency of travel for a vehicle on a corresponding actual route of the plurality of actual routes;

the plurality of actual routes includes a first actual route and a second actual route;

the plurality of graphical routes includes a first graphical route representative of the first actual route and a second graphical route representative of the second actual route; and

visually rendering the plurality of graphical routes includes:

determining a first frequency indicator representing a first frequency of travel for the vehicle of the first actual route;

visually rendering the first graphical route with the first frequency indicator;

determining a second frequency indicator representing a second frequency of travel for the vehicle of the second actual route;

visually rendering the second graphical route with the second frequency indicator; and

the first frequency indicator and the second frequency indicator show a difference between frequencies of travel for the vehicle on the first actual route and the second actual route.

11. The computer-implemented method of claim 10 , wherein the frequency indicator includes color or weight.

12. The computer-implemented method of claim 10 , further comprising rendering an animation representing a plurality of vehicular trips.

13. A computing system for generating an interactive map interface, comprising:

one or more processors;

a memory storing instructions that, upon execution by the one or more processors, cause the computing system to perform one or more processes including:

receiving a plurality of position values and a plurality of time values, the plurality of position values and the plurality of time values associated with a vehicular trip traveled by a user on an actual route;

receiving one or more images, wherein each of the one or more images is associated with one of the plurality of position values;

causing a display device to visually render:

a geographic map; and

one or more geospatial graphics on the geographic map representing the actual route based upon the plurality of position values and the plurality of time values;

receiving, in response to user interaction with the display device, a user indication of a selected location on a visual representation of the actual route, wherein the selected location is a location associated with one of the plurality of position values having an associated image of the one or more images; and

causing the associated image for the selected location to be displayed on the display device.

14. The computing system of claim 13 , wherein the instructions further cause the computing system to perform one or more processes including:

rendering the geographic map in a form scrubbable by the user to play back the vehicular trip; and

wherein the one or more images are displayed on the display device during the play back when the play back corresponds to one of the plurality of position values having a first associated image of the one or more images.

15. The computing system of claim 13 , wherein the instructions further cause the computing system to perform one or more processes including rendering a timeline on the display device configured for the user to play back the vehicular trip during a specific time period of the vehicular trip.

16. The computing system of claim 13 , wherein the instructions further cause the computing system to perform one or more processes including:

receiving environment information during the vehicular trip, wherein the environment information is associated with the plurality of position values;

receiving, via user interaction with the display device, a second user indication of a second selected location on the visual representation of the actual route, wherein the second selected location is a second location associated with one of the plurality of position values having associated environment information; and

displaying on the display device the environment information associated with the selected location.

17. The computing system of claim 13 , wherein the instructions further cause the computing system to perform one or more processes including:

receiving, via user interaction with the display device, a user indication of a geographic stop destination on the visual representation of the actual route;

receiving an image associated with the geographic stop destination; and

displaying on the display device the image associated with the geographic stop destination.

18. The computing system of claim 13 , wherein receiving the one or more images comprises receiving one or more trip images taken during the vehicular trip.

19. The computing system of claim 13 , wherein receiving the one or more images comprises receiving one or more taken images taken by the user of the display device.

20. The computing system of claim 13 , wherein the instructions further cause the computing system to perform one or more processes including:

receiving vehicle status information of a vehicle used for the vehicular trip during the vehicular trip, wherein the vehicle status information is associated with the plurality of position values;

receiving, via user interaction with the display device, a third user indication of a third selected location on the visual representation of the actual route, wherein the third selected location is a third location associated with one of the plurality of position values having associated vehicle status information; and

displaying on the display device the vehicle status information associated with the selected location.

Assignments (3)
CHANGE OF NAME Recorded May 29, 2024
From: BLUEOWL, LLC
To: QUANATA, LLC
Reel/Frame 067558/0600 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2023
From: RUSSO, MICAH WIND; LEUNG, THEOBOLT N.; FINUCANE, GARETH; SANCHEZ, JASON
To: BLUEOWL, LLC
Reel/Frame 064793/0638 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2023
From: SANCHEZ, KENNETH JASON
To: BLUEOWL, LLC
Reel/Frame 064793/0687 →
Continuity (4)
Continuation 17673617 · Feb 16, 2022
Continuation 17069003 · Oct 13, 2020
Continuation 16205601 · Nov 30, 2018
Related Publication 20230222705A1 · Jul 13, 2023