Abstract
Provided are a terminal device and a retransmission control method that make it possible to minimize increases in overhead in an uplink control channel (PUCCH) even if channel selection is used as the method to transmit response signals during carrier-aggregation communication using a plurality of downlink unit bands. On the basis of the generation status of uplink data and error-detection results obtained by a CRC unit a control unit in the provided terminal uses response signal transmission rules to control the transmission of response signals or uplink control signals that indicate the generation of uplink data. If an uplink control signal and a response signal are generated simultaneously within the same transmission time unit the control unit changes the resources allocated to the response signal and/or the phase point of the response signal in accordance with the number and position of ACKs within the error-detection result pattern.
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Specification Information
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Technologies
Product
Use Cases
Services
Claim
1. A base station communicating with a terminal configured with one or more downlink component carriers, the base station comprising:
a transmitting section configured to transmit, to the terminal, downlink assignment information indicating a resource for downlink data, the resource being assigned to respective ones of the downlink component carriers, and configured to transmit the downlink data to the terminal;
a receiving section configured to receive a response signal for the downlink data, the response signal being transmitted from the terminal, and to receive a scheduling request (SR), which is transmitted from the terminal,
wherein:
the response signal denotes an outcome of a decoding of the downlink data, or denotes a Discontinuous Transmission (DTX) representing that the outcome is not transmitted;
when a plurality of downlink component carriers are configured, response signals for a plurality of downlink data in the downlink component carriers are transmitted;
when the response signals are transmitted, the response signals are transmitted using a phase point and one of uplink control channel resources for the response signals depending on an outcome of the decoding of each of the plurality of downlink data; and
when both the response signals and the SR are transmitted in a same sub-frame, the response signals are transmitted using the phase point and an uplink control channel resource for the SR depending on the outcome of the decoding of each of the plurality of downlink data.
2. The base station according to claim 1, wherein when both the response signals and the SR are transmitted in the same sub-frame, a same phase point is used for the response signals that each denotes an unsuccessful outcome of the decoding or the DTX.
3. The base station according to claim 1, wherein when both the response signals and the SR are transmitted in the same sub-frame, a same phase point is used for different combinations of the response signals that share a same number of one or more response signals denoting a successful outcome of the decoding and that also share a same downlink component carrier in which the downlink data are successfully decoded.
4. The base station according to claim 1, wherein when both the response signals and the SR are transmitted in the same sub-frame, at least some of the response signals are bundled into one response signal.
5. The base station according to claim 1, wherein when both the response signals and the SR are transmitted in the same sub-frame, the phase point used for the response signals that each denotes an unsuccessful outcome of the decoding or the DTX is the same as the phase point used for the response signals, one of which denotes a successful outcome of the decoding.
6. The base station according to claim 1, wherein the transmitting section is configured to transmit the downlink assignment information on a control channel element (CCE), and an index of the uplink control channel resource for the response signal is associated with a CCE number.
7. The base station according to claim 1, wherein the transmitting section is configured to transmit the downlink assignment information on a control channel element (CCE), an index of the uplink control channel resource for the response signal is associated with a CCE number, and the base station is further configured to signal an index of the uplink control channel resource for the SR.
8. The base station according to claim 1, wherein the transmitting section is configured to transmit the downlink assignment information on a control channel element (CCE), an index of the uplink control channel resource for the response signal is associated with a CCE number, and an index of the uplink control channel resource for the SR is configured by a higher layer.
9. The base station according to claim 1, wherein the outcome of the decoding is denoted by an Acknowledgement (ACK) or a Negative Acknowledgment (NACK).
10. The base station according to claim 1, wherein the DTX represents that the downlink assignment information for the downlink data is not detected at the terminal.
11. The base station according to claim 1, wherein the phase point is a phase point in a binary phase shift keying (BPSK) modulation or in a quadrature phase shift keying (QPSK) modulation.
12. The base station according to claim 1, wherein a combination of outcomes of the decoding of the plurality of downlink data is associated with the phase point and an index of the uplink control channel resource for the response signal.
13. The base station according to claim 12, wherein different combinations are respectively associated with different phase points and different resource indexes of the uplink control channel resources for the response signal.
14. A method for receiving a response signal transmitted from a terminal configured with one or more downlink component carriers, the method comprising:
transmitting, to the terminal, downlink assignment information indicating a resource for downlink data, the resource being assigned to respective ones of the downlink component carriers, and transmitting the downlink data to the terminal;
receiving a response signal for the downlink data, the response signal being transmitted from the terminal; and
receiving a scheduling request (SR), which is transmitted from the terminal,
wherein:
the response signal denotes an outcome of a decoding of the downlink data, or denotes a Discontinuous Transmission (DTX) representing that the outcome is not transmitted;
when a plurality of downlink component carriers are configured, response signals for a plurality of downlink data in the downlink component carriers are transmitted;
when the response signals are transmitted, the response signals are transmitted using a phase point and one of uplink control channel resources for the response signals depending on an outcome of the decoding of each of the plurality of downlink data; and
when both the response signals and the SR are transmitted in a same sub-frame, the response signals are transmitted using the phase point and an uplink control channel resource for the SR depending on an outcome of the decoding of each of the plurality of downlink data.
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.