IP Library › Granted Patent US 10,530,460
Granted Patent B2
US 10,530,460 · App. 14/635,715 · Granted Jan 7, 2020

Allocating time-frequency blocks for a relay link and an access link

Inventor: Hiroaki Takano (Saitama, JP)
Assignee: Sony Corporation
H04B7/15H04B7/155H04W16/26H04W72/1268H04B7/2606H04W72/1257H04W72/1273H04W84/047
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Quick Facts
Patent No.
US 10,530,460
App. No.
14/635,715
Granted
Jan 7, 2020
Kind
B2
Abstract

A base station is provided with a communication unit for communicating with a mobile terminal via a relay link between the base station and a relay device and an access link between the relay device and the mobile terminal, and a selection unit for selecting an allocation pattern of an uplink of the relay link, a downlink of the relay link, an uplink of the access link, and a downlink of the access link to frequency-time blocks from a plurality of allocation patterns that are different in delay occurring between the base station and the mobile terminal.

Claims (40)

1. A base station, comprising:

circuitry configured to

communicate with a mobile terminal via a relay link between the base station and a relay device and an access link between the relay device and the mobile terminal by orthogonal frequency-division multiplexing,

receive information that indicates an allocation pattern, that the relay device is compatible with, of a plurality of predetermined allocation patterns, the information including identification of a category of the relay device and the category indicating a communication capacity of the relay device,

select a predetermined allocation pattern, which the relay device is compatible with, according to the received information, of an uplink of the relay link and a downlink of the relay link for frequency-time blocks of the plurality of predetermined allocation patterns, wherein the plurality of predetermined allocation patterns are based on subframes of the radio frames used for transmission in uplink and downlink communication in the relay link, and

transmit information that indicates said selected predetermined allocation pattern to said relay device, wherein

the plurality of predetermined allocation patterns includes a type of predetermined allocation pattern where frequency-time blocks of the downlink of the relay link and the downlink of the access link, and the uplink of the relay link and the uplink of the access link are different in time.

2. The base station according to claim 1 , wherein each of the plurality of predetermined allocation patterns has different delay characteristics.

3. The base station according to claim 1 , wherein the circuitry further selects a predetermined allocation pattern of an uplink of the access link, and a downlink of the access link for frequency-time blocks from a plurality of predetermined allocation patterns.

4. A method for a base station, comprising:

communicating, by circuitry of the base station, with a mobile terminal via a relay link between the base station and a relay device and an access link between the relay device and the mobile terminal by orthogonal frequency-division multiplexing;

receiving, by the circuitry of the base station, information that indicates an allocation pattern, that the relay device is compatible with, of a plurality of allocation patterns, the information including identification of a category of the relay device and the category indicating a communication capacity of the relay device,

selecting, by the circuitry of the base station, a predetermined allocation pattern, which the relay device is compatible with according to the received information, of an uplink of the relay link and a downlink of the relay link for frequency-time blocks of the plurality of predetermined allocation patterns, wherein the plurality of predetermined allocation patterns are based on subframes of the radio frames used for transmission in uplink and downlink communication in the relay link,

transmit information that indicates said selected predetermined allocation pattern to said relay device, and

the plurality of predetermined allocation patterns includes a type of predetermined allocation pattern where frequency-time blocks of the downlink of the relay link and the downlink of the access link, and the uplink of the relay link and the uplink of the access link are different in time.

5. The method according to claim 4 , wherein each of the plurality of predetermined allocation patterns has different delay characteristics.

6. The method according to claim 4 , further comprising:

selecting, by the circuitry of the base station, a predetermined pattern of an uplink, and a downlink of the access link for frequency-time blocks from a plurality of predetermined allocation patterns.

7. A mobile terminal, comprising:

circuitry configured to communicate with a base station via a relay device according to a predetermined allocation pattern selected by the base station,

wherein the mobile terminal communicates with the base station via a relay link between the base station and the relay device and an access link between the relay device and the mobile terminal, and

the mobile terminal communicates with the relay device by a predetermined allocation pattern, which the relay device is compatible with, of an uplink of the relay link and a downlink of the relay link for frequency-time blocks of a plurality of predetermined allocation patterns, wherein the plurality of predetermined allocation patterns are based on subframes of the radio frames used for transmission in uplink and downlink communication in the relay link, the predetermined allocation pattern being selected based on information indicating an allocation pattern, that the relay device is compatible with, of the plurality of predetermined allocation patterns, the information including identification of a category of the relay device and the category indicating a communication capacity of the relay device,

the plurality of predetermined allocation patterns include a type of predetermined allocation patterns where frequency-time blocks of the downlink of the relay link and a downlink of the access link, and the uplink of the relay link and an uplink of the access link are different in time.

8. The mobile terminal according to claim 7 , wherein each of the plurality of predetermined allocation patterns have different delay characteristics.

9. A method for a mobile terminal, comprising:

communicating, by circuitry, with a base station via a relay device according to a predetermined allocation pattern selected by the base station,

wherein the mobile terminal communicates with the base station via a relay link between the base station and the relay device and an access link between the relay device and the mobile terminal, and

the mobile terminal communicates with the relay device by a predetermined allocation pattern, which the relay device is compatible with, of an uplink of the relay link and a downlink of the relay link for frequency-time blocks of a plurality of predetermined allocation patterns, wherein the plurality of predetermined allocation patterns are based on subframes of the radio frames used for transmission in uplink and downlink communication in the relay link, the predetermined allocation pattern being selected based on information indicating an allocation pattern, that the relay device is compatible with, of the plurality of allocation patterns, the information including identification of a category of the relay device and the category indicating a communication capacity of the relay device,

the plurality of predetermined allocation patterns include a type of predetermined allocation patterns where frequency-time blocks of the downlink of the relay link and a downlink of the access link, and the uplink of the relay link and an uplink of the access link are different in time.

10. A communication system, comprising:

a mobile terminal;

a relay device; and

a base station including circuitry configured to

communicate with the mobile terminal via a relay link between the base station and the relay device and an access link between the relay device and the mobile terminal by orthogonal frequency-division multiplexing,

communicate with a mobile terminal via a relay link between the base station and a relay device and an access link between the relay device and the mobile terminal by orthogonal frequency-division multiplexing,

receive information that indicates an allocation pattern, that the relay device is compatible with, of a plurality of predetermined allocation patterns, the information including identification of a category of the relay device and the category indicating a communication capacity of the relay device,

select a predetermined allocation pattern, which the relay device is compatible with, according to the received information, of an uplink of the relay link and a downlink of the relay link for frequency-time blocks of the plurality of predetermined allocation patterns, wherein the plurality of predetermined allocation patterns are based on subframes of the radio frames used for transmission in uplink and downlink communication in the relay link, and

transmit information that indicates said selected predetermined allocation pattern to said relay device, wherein

the plurality of predetermined allocation patterns includes a type of predetermined allocation pattern where frequency-time blocks of the downlink of the relay link and the downlink of the access link, and the uplink of the relay link and the uplink of the access link are different in time.

11. The base station according to claim 1 , wherein the category of the relay device identifies allocation patterns that are compatible with the relay device.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 13, 2023
From: SONY GROUP CORPORATION
To: PANTECH CORPORATION
Reel/Frame 062668/0844 →
CHANGE OF NAME Recorded Jan 17, 2023
From: SONY CORPORATION
To: SONY GROUP CORPORATION
Reel/Frame 062392/0902 →
Priority Claims (1)
JP 2009-174589 · Jul 27, 2009 · national
Continuity (2)
Continuation 13383590
Related Publication 20150171952A1 · Jun 18, 2015
Cited By (1)
US 12,580,635