IP Library Granted Patent US 8,866,604
Granted Patent B2
US 8,866,604 · App. 13/767,303 · Granted Oct 21, 2014

System and method for a human machine interface

Inventors: James Stewart Rankin (Novi, MI); Basavaraj Tonshal (Northville, MI); Pietro Buttolo (Dearborn Heights, MI); Yifan Chen (Ann Arbor, MI); Gary Steven Strumolo (Canton, MI); Jeffrey Allen Greenberg (Ann Arbor, MI); Dimitar Petrov Filev (Novi, MI); Krishnaswamy Venkatesh Prasad (Ann Arbor, MI)
Assignee: Ford Global Technologies, LLC
G06F3/048
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Quick Facts
Patent No.
US 8,866,604
App. No.
13/767,303
Granted
Oct 21, 2014
Kind
B2
Abstract

A vehicle computer system comprising a wireless transceiver configured to send a nomadic device human machine interface to a nomadic device in a web browser format. The vehicle computer system further comprises a vehicle server utilizing a contextual data aggregator that utilizes vehicle data and off-board data to generate a dynamic human machine interface, the server further configured to generate an in-vehicle human machine interface for output on a vehicle display and generate the nomadic device human machine interface for the nomadic device to display.

Claims (27)

1. A vehicle computer system comprising:

a wireless transceiver configured to establish a connection with a nomadic device, wherein the wireless transceiver is further configured to send a nomadic device human machine interface (HMI) configured for output on the nomadic device using a first web browser format;

a vehicle display configured to output an in-vehicle HMI using a second web browser format for controlling various vehicle functions; and

a vehicle server configured to generate the in-vehicle HMI for the vehicle display and generate the nomadic device HMI for the nomadic device.

2. The vehicle computer system of claim 1 , wherein the vehicle computer system further includes an off-board server in communication with the vehicle computer system, the off-board server configured to utilize or provide off-board data for generating the nomadic device HMI or the in-vehicle HMI.

3. The vehicle computer system of claim 2 , wherein the off-board server contains one or more of off-board vehicle data, smart phone vehicle data, and vehicle human machine interface data.

4. The vehicle computer system of claim 2 , wherein the off-board server is further configured to exchange data between the vehicle server utilizing web sockets.

5. The vehicle computer system of claim 2 , wherein the off-board server includes a contextual data aggregator that utilizes one or more of off-board vehicle data, smart phone vehicle data, and vehicle human machine interface data to generate a contextual human machine interface to be sent to the vehicle computer system.

6. The vehicle computer system of claim 2 , wherein the vehicle computer system maintains a persistent connection with the off-board server utilizing websockets.

7. The vehicle computer system of claim 1 , wherein the in-vehicle HMI includes a voice-interactive interface.

8. The vehicle computer system of claim 1 , wherein the vehicle server is configured to utilize a full-duplex communication channel over a single TCP connection.

9. The vehicle computer system of claim 1 , wherein the connection with the nomadic device is a Wi-Fi direct connection.

10. The vehicle computer system of claim 1 , wherein the first web browser format and the second web browser format are the same.

11. The vehicle computer system of claim 1 , wherein the vehicle server is configured to detect a capable format of the browser and generate the nomadic device HMI or the in-vehicle HMI based on the capable format of the browser.

12. The vehicle computer system of claim 1 , wherein the vehicle server is configured to support natural language query search based human machine interface.

13. An off-board computer system comprising:

a wireless transceiver communicating with a vehicle; and

a server that includes a contextual data aggregator which utilizes vehicle data retrieved from the wireless transceiver and off-board data to generate a dynamic contextual human machine interface based on the vehicle data and off-board data in a web browser data format to be sent to the vehicle utilizing the wireless transceiver.

14. The off-board computer system of claim 13 , wherein the wireless transceiver is further capable of communicating with a nomadic device.

15. The off-board computer system of claim 13 , wherein the dynamic contextual human machine interface includes a voice recognition menu to be sent to the vehicle.

16. The off-board computer system of claim 13 , wherein the off-board data includes data received from a home server.

17. The off-board computer system of claim 13 , wherein the off-board data includes media data received from a media server.

18. The off-board computer system of claim 17 , wherein the media data includes music data, picture data, or video data.

19. The off-board computer system of claim 13 , wherein the server is further configured to generate a language query search HMI utilizing the vehicle data and the off-board data, the query search HMI to be sent to the vehicle utilizing the wireless transceiver.

20. A vehicle computer system comprising:

a wireless transceiver configured to send a nomadic device (ND) human machine interface (HMI) to a ND in a web browser format; and

a vehicle server utilizing a contextual data aggregator that utilizes vehicle data and off-board data to generate a dynamic HMI, the server further configured to generate an in-vehicle HMI for output on a vehicle display and generate the ND HMI for the ND to display.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2013
From: BUTTOLO, PIETRO; CHEN, YIFAN; FILEV, DIMITAR PETROV; GREENBERG, JEFFREY ALLEN; PRASAD, KRISHNASWAMY VENKATESH; RANKIN, JAMES STEWART; STRUMOLO, GARY STEVEN; TONSHAL, BASAVARAJ
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 029814/0654 →
Continuity (1)
Related Publication 20140225724A1 · Aug 14, 2014