Terminal device, base station device, and transmission/reception method

US9425942B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9425942-B2
Application numberUS-201214122068-A
CountryUS
Kind codeB2
Filing dateJul 27, 2012
Priority dateAug 10, 2011
Publication dateAug 23, 2016
Grant dateAug 23, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

In the present invention, even if different UL-DL configurations are set for a plurality of unit bands, notification timing of error detection results for SCell is not dispersed complicatedly, and the processing relating to the error detection results can be simplified. At the reference notification timing of a response signal with respect to downlink data of a second unit band, if a sub-frame of the second unit band is an uplink communication sub-frame and a sub-frame of a first unit band is a downlink communication sub-frame, a control unit ( 208 ) transmits the response signal with respect to the downlink data in a specific uplink communication sub-frame (for example, # 2 or # 7 ) set in the first unit band.

First claim

Opening claim text (preview).

The invention claimed is: 1. A terminal apparatus comprising: a receiver which, in operation, receives downlink data on a first component carrier and a second component carrier, wherein the first component carrier and the second component carrier have different frame configuration patterns among a plurality of frame configuration patterns, each frame configuration pattern defining transmission timings of one or more uplink subframes and one or more downlink subframes within a frame; a response signal generator which, in operation, performs error detection of the downlink data received on each of the first component carrier and the second component carrier, and generates a response signal indicating error detection results for the first component carrier and the second component carrier; and a transmitter which, in operation, transmits the response signal for the first component carrier and the second component carrier using specified uplink subframe(s) within the frame only on the first component carrier, wherein subframe(s) other than the specified uplink subframe(s) within the frame are not used for transmitting the response signal for the first component carrier and the second component carrier, the specified uplink subframe(s) having a transmission timing that is defined according to the same periodicity as a periodicity of a switching point from downlink transmission to uplink transmission (DL/UL switching point), the plurality of frame configuration patterns including at least two frame configuration patterns whose periodicity of the DL/UL switching point is different from each other. 2. The terminal apparatus according to claim 1 , wherein the plurality of frame configuration patterns include one frame configuration pattern whose periodicity of the DL/UL switching point is 5 milliseconds (ms) and another frame configuration pattern whose periodicity of the DL/UL switching point is 10 ms; if the periodicity of the DL/UL switching point in a first frame configuration pattern for the first component carrier is 5 ms, a number of the specified uplink subframe(s) included in one frame is two; and if the periodicity of the DL/UL switching point in the first frame configuration pattern for the first component carrier is 10 ms, the number of the specified uplink subframe(s) included in one frame is one. 3. The terminal apparatus according to claim 2 , wherein the one frame is comprised of ten subframes with indexes # 0 , # 1 , # 2 , # 3 , # 4 , # 5 , # 6 , # 7 , # 8 , # 9 ; and if the periodicity of the DL/UL switching point in the first frame configuration pattern is 5 ms, the specified uplink subframe(s) are a subframe # 2 and a subframe # 7 ; and if the periodicity of the DL/UL switching point in the first frame configuration pattern is 10 ms, the specified uplink subframe is a subframe # 2 . 4. The terminal apparatus according to claim 1 , wherein each of the plurality of frame configuration patterns further defines a transmission timing of a special subframe including a guard period for switching from a downlink subframe to a uplink subframe; and the periodicity of the DL/UL switching point equals a periodicity of the special subframe. 5. The terminal apparatus according to claim 4 , wherein the specified uplink subframe(s) is a subframe located next to the special subframe in a time domain. 6. The terminal apparatus according to claim 1 , wherein a ratio of the uplink subframe(s) and the downlink subframe(s) included in a single frame according to a first frame configuration pattern for the first component carrier is different from a ratio of the uplink subframe(s) and the downlink subframe(s) included in the single frame according to a second frame configuration pattern for the second component carrier. 7. The terminal apparatus according to claim 1 , wherein the specified uplink subframe(s) is an uplink subframe located at an earliest transmission timing which is more than four subframes after the one or more downlink subframes. 8. A response signal transmission method comprising: receiving downlink data on a first component carrier and a second component carrier, wherein the first component carrier and the second component carrier have different frame configuration patterns among a plurality of frame configuration patterns, each frame configuration pattern defining transmission timings of one or more uplink subframes and one or more downlink subframes within a frame; performing error detection of the downlink data received on each of the first component carrier and the second component carrier and generating a response signal indicating error detection results for the first component carrier and the second component carrier; and transmitting the response signal for the first component carrier and the second component carrier using specified uplink subframe(s) within the frame only on the first component carrier, wherein subframe(s) other than the specified uplink subframe(s) within the frame are not used for transmitting the response signal for the first component carrier and the second component carrier, the specified uplink subframe(s) having a transmission timing that is defined according to the same periodicity as a periodicity of a switching point from downlink transmission to uplink transmission (DL/UL switching point), the plurality of frame configuration patterns including at least two frame configuration patterns whose periodicity of the DL/UL switching point is different from each other. 9. The response signal transmission method according to claim 8 , wherein the plurality of frame configuration patterns include one frame configuration pattern whose periodicity of the DL/UL switching point is 5 milliseconds (ms) and another frame configuration pattern whose periodicity of the DL/UL switching point is 10 ms; if the periodicity of the DL/UL switching point in a first frame configuration pattern for the first component carrier is 5 ms, a number of the specified uplink subframe(s) included in one frame is two; and if the periodicity of the DL/UL switching point in the first frame configuration pattern for the first component carrier is 10 ms, the number of the specified uplink subframe(s) included in one frame is one. 10. The response signal transmission method according to claim 9 , wherein the one frame is comprised of ten subframes with indexes # 0 , # 1 , # 2 , # 3 , # 4 , # 5 , # 6 , # 7 , # 8 , # 9 ; and if the periodicity of the DL/UL switching point in the first frame configuration pattern is 5 ms, the specified uplink subframe(s) are a subframe # 2 and a subframe # 7 ; and if the periodicity of the DL/UL switching point in the first frame configuration pattern is 10 ms, the specified uplink subframe is a subframe # 2 . 11. The response signal transmission method according to claim 8 , wherein each of the plurality of frame configuration patterns further defines transmission timing of a special subframe including a guard period for switching from a downlink subframe to a uplink subframe; and the periodicity of the DL/UL switching point equals a periodicity of the special subframe. 12. The response signal transmission method according to claim 11 , wherein the specified uplink subframe(s) is a subframe located next to the special subframe in a time domain. 13. The response signal transmission method according to claim 8 , wherein a ratio of the uplink subframe(s) and the downlink subframe(s) included in a single frame according to a first frame configuration pattern for the first component carrier is different from a ratio of the uplink subframe(s) and the downlink subframe(s) included in the single frame according

Assignees

Inventors

Classifications

  • of uplink data flows · CPC title

  • H04L5/0055Primary

    Physical resource allocation for ACK/NACK (for physical mapping arrangements in ARQ protocols H04L1/1861) · CPC title

  • Multicarrier modulation systems · CPC title

  • H04L1/1854Primary

    Scheduling and prioritising arrangements · CPC title

  • Physical mapping arrangements (for ACK signaling see also H04L5/0053) · CPC title

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What does patent US9425942B2 cover?
In the present invention, even if different UL-DL configurations are set for a plurality of unit bands, notification timing of error detection results for SCell is not dispersed complicatedly, and the processing relating to the error detection results can be simplified. At the reference notification timing of a response signal with respect to downlink data of a second unit band, if a sub-frame …
Who is the assignee on this patent?
Oizumi Toru, Horiuchi Ayako, Nishio Akihiko, and 1 more
What technology area does this patent fall under?
Primary CPC classification H04L5/0055. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Aug 23 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).