IP Library Granted Patent US 9,374,477
Granted Patent B2
US 9,374,477 · App. 14/198,156 · Granted Jun 21, 2016

Wrist computer wireless communication and event detection

Inventors: Mika Erkkila (Oulu, FI); Niclas Granqvist (Magenwill, CH)
Assignee: POLAR ELECTRO OY
H04N1/00204A63B24/00G06F19/3481G11B27/031G11B27/30H04N1/2129H04N5/772H04N7/185H04N2101/00H04N2201/0096
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Quick Facts
Patent No.
US 9,374,477
App. No.
14/198,156
Granted
Jun 21, 2016
Kind
B2
Abstract

A system includes a wrist computer and a portable video camera. The wrist computer acquires physical activity data measured by a sensor device, generates a time marker on the basis of the physical activity data, and transmits the time marker to the portable video camera according to a predefined wireless communication protocol. The portable video camera is configured to record video data, encode the video data into a video data file, and store the received time marker as meta data in the video file.

Claims (56)

1. A wrist computer comprising:

a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol; and

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol, wherein the processor is configured to generate, on the basis of the physical activity data, a start command triggering start of video recording and to cause the bi-directional wireless communication interface to communicate the start command to at least one portable video camera according to the predefined communication protocol.

2. The wrist computer of claim 1 , wherein the processor is further configured to process the acquired physical activity data into performance metrics data and to cause the bi-directional wireless communication interface to communicate the performance metrics data to the portable video camera according to the predefined communication protocol.

3. The wrist computer of claim 2 , wherein the performance metrics data is associated with timing indicated by the time marker.

4. The wrist computer of claim 1 , wherein the processor is configured to identify a performance event from the physical activity data and to generate, when the performance event has been identified, the time marker indicating timing of the identified performance event.

5. The wrist computer of claim 1 , wherein the processor is configured to record physical activity data for a performance period of a physical performance, wherein the performance period spans over at least a plurality of seconds, to apply post-processing to the recorded physical activity data after the performance period has ended, and to acquire the time marker as a result of said post-processing, wherein the time marker indicates a timing within the performance period.

6. The wrist computer of claim 1 , wherein the bi-directional wireless interface is configured to communicate the time marker to a plurality of portable video cameras simultaneously according to the predefined communication protocol.

7. The wrist computer of claim 1 , wherein the processor is configured to retrieve user information from a memory and to cause the bi-directional wireless communication interface to transmit the user information to the at least one portable video camera according to the predefined communication protocol.

8. The wrist computer of claim 1 , wherein the processor is configured to synchronize its clock with a clock of the portable video camera through the bi-directional wireless communication interface, thereby obtaining a common time reference for the time marker.

9. A wrist computer comprising:

a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol;

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol; and

a graphical interface, wherein the processor is configured to automatically retrieve graphical content associated with the time marker from the portable video camera within a predefined time period through the bi-directional wireless communication interface and, upon retrieving the graphical content, to cause the graphical interface to display the graphical content.

10. A wrist computer comprising:

a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol;

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol, wherein the bi-directional wireless interface is configured to receive camera location data from at least one portable video camera according to the predefined communication protocol, and wherein the processor is configured to determine location of the wrist computer, to compare the location of the wrist computer with the camera location data, and to generate the time marker when the comparison exceeds a predefined threshold.

11. A system comprising:

a wrist computer comprising a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol; and

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol, wherein the processor is configured to generate, on the basis of the physical activity data, a start command triggering start of video recording and to cause the bi-directional wireless communication interface to communicate the start command to at least one portable video camera according to the predefined communication protocol, said portable video camera comprising:

a camera device configured to capture video data;

an encoder configured to encode the captured video data into a video data file;

a bi-directional wireless communication interface configured to communicate wirelessly with the wrist computer according to the predefined communication protocol; and

a processor configured to acquire a time marker from the wrist computer through the bi-directional wireless interface, and to store the acquired time marker as meta data in the video data file.

12. A computer program product embodied on a non-transitory distribution medium readable by a computer and comprising program instructions which, when executed by an apparatus, perform a computer process comprising:

acquiring physical activity data measured by a sensor device;

generating a time marker on the basis of the physical activity data;

causing a bi-directional wireless interface of the apparatus to transmit the time marker to a portable video camera according to a predefined communication protocol; and

generating, on the basis of the physical activity data, a start command triggering start of video recording and to cause the bi-directional wireless communication interface to communicate the start command to at least one portable video camera according to the predefined communication protocol.

13. A system comprising:

a wrist computer comprising a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol; and

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol; and a graphical interface, wherein the processor is configured to automatically retrieve graphical content associated with the time marker from the portable video camera within a predefined time period through the bi-directional wireless communication interface and, upon retrieving the graphical content, to cause the graphical interface to display the graphical content, said portable video camera comprising:

a camera device configured to capture video data;

an encoder configured to encode the captured video data into a video data file;

a bi-directional wireless communication interface configured to communicate wirelessly with the wrist computer according to the predefined communication protocol; and

a processor configured to acquire a time marker from the wrist computer through the bi-directional wireless interface, and to store the acquired time marker as meta data in the video data file.

14. A system comprising:

a wrist computer comprising a bi-directional wireless communication interface configured to communicate wirelessly with a portable video camera according to a predefined communication protocol; and

a processor configured to acquire physical activity data measured by a sensor device, to generate a time marker on the basis of the physical activity data, and to cause the bi-directional wireless interface to transmit the time marker to the portable video camera according to the predefined communication protocol, wherein the bi-directional wireless interface is configured to receive camera location data from at least one portable video camera according to the predefined communication protocol, and wherein the processor is configured to determine location of the wrist computer, to compare the location of the wrist computer with the camera location data, and to generate the time marker when the comparison exceeds a predefined threshold, said portable video camera comprising:

a camera device configured to capture video data;

an encoder configured to encode the captured video data into a video data file;

a bi-directional wireless communication interface configured to communicate wirelessly with the wrist computer according to the predefined communication protocol; and

a processor configured to acquire a time marker from the wrist computer through the bi-directional wireless interface, and to store the acquired time marker as meta data in the video data file.

15. A computer program product embodied on a non-transitory distribution medium readable by a computer and comprising program instructions which, when executed by an apparatus, perform a computer process comprising:

acquiring physical activity data measured by a sensor device;

generating a time marker on the basis of the physical activity data; and

causing a bi-directional wireless interface of the apparatus to transmit the time marker to a portable video camera according to a predefined communication protocol; and

automatically retrieving graphical content associated with the time marker from the portable video camera within a predefined time period through the bi-directional wireless communication interface and, upon retrieving the graphical content, causing the graphical content to be displayed.

16. A computer program product embodied on a non-transitory distribution medium readable by a computer and comprising program instructions which, when executed by an apparatus, perform a computer process comprising:

acquiring physical activity data measured by a sensor device;

generating a time marker on the basis of the physical activity data;

causing a bi-directional wireless interface of the apparatus to transmit the time marker to a portable video camera according to a predefined communication protocol;

receiving camera location data from the portable video camera according to the predefined communication protocol;

determining location of the wrist computer;

comparing the location of the wrist computer with the camera location data; and

generating the time marker when the comparison exceeds a predefined threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2014
From: ERKKILA, MIKA; GRANQVIST, NICLAS
To: POLAR ELECTRO OY
Reel/Frame 032746/0198 →
Continuity (1)
Related Publication 20150256689A1 · Sep 10, 2015