IP Library Patent Application 14790392
Patent Application
App. No. 14/790,392

SYSTEMS AND METHODS FOR PROVIDING ENHANCED MOTION DETECTION

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Quick Facts
Patent No.
US None
App. No.
14/790,392
Abstract

Provided are systems and methods for providing enhanced motion detection. One system providing enhanced motion detection includes a smart display, an interface subsystem including a human interface device (HID), and a console having a processor configured to form communication links with the smart display and the interface subsystem and to provide motion detection feedback, using the smart display, to a user of the HID, where the HID is configured to sense motion of the HID and utilize a predictive model to characterize the motion of the HID. One interface subsystem includes a camera to sense motion of a user of the HID. One processor is configured to negotiate a reduced response latency with the smart display.

Claims (68)

1 - 25 . (canceled)

26 . An input device that provides enhanced motion detection to a console, the input device comprising:

circuitry configured to

sense a first motion of the input device;

generate a predictive model that predicts subsequent motion of the input device according to the first motion;

transmit the predictive model to the console;

sense a second motion of the input device;

generate, when the second motion deviates from the predictive model, a modified predictive model by changing at least one parameter of the predictive model based on the second motion; and

transmit the modified predictive model to the console when the second motion deviates from the predictive model.

27 . The input device according to claim 26 , wherein the circuitry is configured to not communicate with the console when the second motion corresponds to the predictive model.

28 . The input device according to claim 26 , wherein the circuitry is configured to wirelessly transmit the predictive model to the console.

29 . The input device according to claim 26 , wherein the circuitry is further configured to:

determine whether the second motion deviates from the predictive model; and

transmit, in a transmission separate from any predictive model, the second motion to the console.

30 . The input device according to claim 26 , wherein the circuitry is further configured to:

determine whether the second motion deviates from the predictive model; and

transmit, in a transmission separate from any predictive model, deviations to the console, the deviations being differences between the second motion and the predictive model.

31 . The input device according to claim 26 , wherein

the input device further comprises a camera, and

the circuitry is configured to sense motion of the input device according to image data captured by the camera.

32 . An electronic system comprising:

a console that provides motion detection feedback to a user; and

an input device including first circuitry configured to:

sense a first motion of the input device;

generate a predictive model according to the first motion, the predictive model predicting subsequent motion of the input device;

transmit the predictive model to the console;

sense a second motion of the input device;

generate, when the second motion deviates from the predictive model, a modified predictive model by changing at least one parameter of the predictive model based on the second motion; and

transmit the modified predictive model to the console when the second motion deviates from the predictive model, wherein

the console is configured to utilize a most recent predictive model received from the input device to provide the motion detection feedback to the user.

33 . The electronic system according to claim 32 , wherein

the console is further configured to form a communication link with the input device, and

the communication link is a wireless communication link.

34 . The electronic system according to claim 33 , wherein utilization of the most receive predictive model by the console reduces utilization of the communication link between the console and the input device.

35 . The electronic system according to claim 32 , wherein

the input device is further configured to

determine whether the second motion deviates from the predictive model; and

transmit, in a transmission separate from any predictive model, deviations to the console, the deviations being differences between the second motion and the predictive model, and

the console is further configured to utilize the deviations to provide the motion detection feedback to the user.

36 . The electronic system according to claim 32 , wherein

the input device further comprises a camera, and

the circuitry is configured to sense motion of the input device according to image data captured by the camera.

37 . The electronic system according to claim 32 , further comprising:

a smart display, wherein

the console is configured to form a communication link with the smart display and to negotiate a reduced response latency with the smart display.

38 . The electronic system according to claim 32 , wherein the input device is configured to not communicate with the console when the second motion corresponds to the predictive model.

39 . The electronic system according to claim 32 , wherein

the console is configured to utilize the most recent predictive model received from the input device to compensate for signal loss from the input device.

40 . A motion detection input method, comprising:

sensing a first motion of an input device;

generating a predictive model that predicts subsequent motion of the input device according to the first motion;

transmitting the predictive model to a remote console;

sensing a second motion of the input device;

generating, when the second motion deviates from the predictive model, a modified predictive model by changing at least one parameter of the predictive model based on the second motion; and

transmitting the modified predictive model to the console when the second motion deviates from the predictive model.

41 . The motion detection input method according to claim 40 , further comprising:

receiving, by the console, a most recent predictive model from the input device; and

providing, by the console, motion detecting feedback to a user according to the most recent predictive model.

42 . The motion detection input method according to claim 40 , wherein the input device is configured to not communicate with the console when the second motion corresponds to the predictive model.

43 . The motion detection input method according to claim 40 , further comprising:

determining whether the second motion deviates from the predictive model; and

transmitting, in a transmission separate from any predictive model, the second motion to the console.

44 . The motion detection input method according to claim 40 , further comprising:

determining, whether the second motion deviates from the predictive model; and

transmitting, in a transmission separate from any predictive model, deviations to the console, the deviations being differences between the second motion and the predictive model.

45 . The motion detection input method according to claim 40 , wherein

the input device includes a camera, and

the method further comprises sensing motion of the input device according to image data captured by the camera.

Assignments (3)
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BROADCOM CORPORATION
Reel/Frame 041712/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2017
From: BROADCOM CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041706/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: BROADCOM CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037806/0001 →