IP Library › Granted Patent US 9,813,869
Granted Patent B2
US 9,813,869 · App. 14/988,797 · Granted Nov 7, 2017

Communication device and communication method for wireless communications

Inventors: Jinhui Chen (Beijing, CN); Yuxin Wei (Beijing, CN); Chen Sun (Beijing, CN)
Assignee: SONY CORPORATION
H04W4/025H04W64/00
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Quick Facts
Patent No.
US 9,813,869
App. No.
14/988,797
Granted
Nov 7, 2017
Kind
B2
Abstract

The present disclosure provides a communication device for wireless communication systems and a communication method for the communication device. The communication device includes: one or more processors, configured to determine information of a reference geographical location used for the communication device, and generate, based on the information of the reference geographical location and a current absolute geographical location of the communication device, information of a relative geographical location of the communication device with respect to the reference geographical location; and a communication unit, configured to transmit the information of the relative geographical location to a predetermined communication object.

Claims (49)

1. A communication device, comprising:

one or more processors, configured to

determine a reference geographical location;

generate, based on a calculated difference between the reference geographical location and the current absolute geographical location of the communication device, a relative geographical location of the communication device with respect to the reference geographical location;

quantize and encode the generated relative geographical location of the communication device to generate information of the relative geographical location; and

a communication interface, configured to transmit the information of the relative geographical location to a predetermined communication object which determines the current absolute geographical location of the communication device based on the information of the relative geographical location and the reference geographical location.

2. The communication device according to claim 1 , wherein, the communication interface is further configured to receive information of a geographical location of the predetermined communication object, wherein, the one or more processors are further configured to determine the geographical location of the predetermined communication object as the reference geographical location.

3. The communication device according to claim 1 , wherein, the communication device transmits, at different time instants, information of the relative geographical location of the communication device at respective time instants to the predetermined communication object, wherein, the one or more processors are configured to determine the absolute geographical location of the communication device at a first one of the time instants as the reference geographical location at a current one of the time instants.

4. The communication device according to claim 1 , wherein, the communication interface is further configured to receive information of multiple absolute geographical locations serving as candidate reference geographical locations and corresponding identifiers, wherein, the one or more processors are configured to select, based on distances between the multiple absolute geographical locations and the communication device, one of the multiple absolute geographical locations as the reference geographical location.

5. The communication device according to claim 1 , wherein, the communication interface is further configured to receive information of a geographical location of a relay node on a communication link between the communication device and the predetermined communication object, wherein, the one or more processors are further configured to determine the geographical location of the relay node as the reference geographical location.

6. The communication device according to claim 1 , further comprising:

positioning circuitry, wherein

the one or more processors are configured to determine the absolute geographical location of the communication device based on positioning data from the positioning circuitry.

7. The communication device according to claim 1 , further comprising; a memory, configured to store one or more geographical location information quantization tables, wherein the one or more processors are further configured to quantize and encode the difference value based on a corresponding geographical location information quantization table.

8. The communication device according to claim 7 , wherein,

the memory stores multiple geographical location information quantization tables with different quantization granularities and/or sizes; and

the one or more processors one of the multiple geographical location information quantization tables with a particular quantization granularity and/or size to quantize and encode the difference value.

9. The communication device according to claim 8 , wherein, the communication interface receives an indicator for indicating a geographical location information quantization table configured according to a deployment environment of the reference geographical location,

the one or more processors quantize and encode the difference value between the absolute geographical location of the communication device and the reference geographical location by using the one of the multiple geographical location information quantization tables that corresponds to the indicator.

10. A communication device, comprising:

a communication interface, configured to receive, from a communication object, information of a first relative geographical location of the communication object of the communication device with respect to a reference geographical location; and

one or more processors, configured to determine, based on the information of the first relative geographical location and the reference geographical location, a current absolute geographical location of the communication object, wherein

the communication object generates the information of the first relative geographical location based on the current absolute geographical location of the communication object and the reference geographical location, and

a difference value is calculated between the current absolute geographical location of the communication object and the reference geographical location, and the difference value is quantized and encoded to generate the information of the first relative geographical location.

11. The communication device according to claim 10 , wherein, the one or more processors are further configured to determine an absolute geographical location of the communication device as the reference geographical location and the communication interface is configured to transmit information of the reference geographical location to the communication object of the communication device.

12. The communication device according to claim 10 , wherein, the communication device receives, at different time instants, information of the absolute geographical location of the communication object at respective time instants, wherein, the one or more processors are further configured to deter none the absolute geographical location of the communication object at a first one of the time instants as the reference geographical location at a current one of the time instants, and determine, based on the information of the first relative geographical location and the information of the reference geographical location at the current one of the time instants, the current absolute geographical location or a current relative geographical location of the communication object.

13. The communication device according to claim 10 , wherein, the one or more processors are configured to calculate a sum of the first relative geographical location and the reference geographical location to acquire the information of the current absolute geographical location of the communication object.

14. The communication device according to claim 10 , wherein, the communication interface transmits information of the reference geographical location through at least one of broadcast channel signaling, downlink control channel signaling, connection management procedure RRC signaling mapped to downlink shared channel and control element information of media access layer.

15. The communication device according to claim 10 , wherein, the communication device is a mobile node, and the communication interface is further configured to transmit, periodically or in an event-triggering manner, information of the absolute geographical location of the communication device as the information of the reference geographical location.

16. A communication method for a communication device for wireless communication systems, comprising:

determining a reference geographical location;

generating, by circuitry of the communication device and based on a calculated difference between the reference geographical location and a current absolute geographical location of the communication device, a relative geographical location of the communication device with respect to the reference geographical location;

quantizing and encoding the generated relative geographical location of the communication device to generate information of the relative geographical location; and

transmitting information of the relative geographical location to a predetermined communication object which acquires the current absolute geographical location of the communication device based on the information of the relative geographical location and the reference geographical location.

17. A communication method for a communication device for wireless communication systems, comprising:

receiving, from a communication object, information of a first relative geographical location of the communication object of the communication device with respect to a reference geographical location; and

determining, by circuitry of the communication device and based on the information of the first relative geographical location and the reference geographical location, a current geographical location of the communication object, wherein

the communication object generates the information of the first relative geographical location based on the current absolute geographical location of the communication object and the reference geographical location, and

a difference value is calculated between the current absolute geographical location of the communication object and the reference geographical location, and the difference value is quantized and encoded to generate the information of the first relative geographical location.

18. A non-transitory computer readable storage device having instructions stored therein that when executed by processing circuitry of a communication device performs a communications method, the method comprising:

determining a reference geographical location;

generating, based on a calculated difference between the reference geographical location and a current absolute geographical location of the communication device, a relative geographical location of the communication device with respect to the reference geographical location;

quantizing and encoding the generated relative geographical location of the communication device to generate information of the relative geographical location; and

outputting information of the relative geographical location for transmission to a predetermined communication object which acquires the current absolute geographical location of the communication device based on the information of the relative geographical location and the reference geographical location.

19. A non-transitory computer readable storage device having instructions stored therein that when executed by processing circuitry of a communication device performs a communications method, the method comprising:

receiving, from a communication object, information of a first relative geographical location of the communication object of the communication device with respect to a reference geographical location; and

determining, based on the information of the first relative geographical location and the reference geographical location, a current geographical location of the communication object, wherein

the communication object generates the information of the first relative geographical location based on the current absolute geographical location of the communication object and the reference geographical location, and

a difference value is calculated between the current absolute geographical location of the communication object and the reference geographical location, and the difference value is quantized and encoded to generate the information of the first relative geographical location.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2016
From: CHEN, JINHUI; WEI, YUXIN; SUN, CHEN
To: SONY CORPORATION
Reel/Frame 037416/0156 →
Priority Claims (1)
CN 2015 1 0083127 · Feb 15, 2015 · national
Continuity (1)
Related Publication 20160242005A1 · Aug 18, 2016