Abstract
Embodiments of the present invention provide a method for detecting and sending control signaling a user equipment and a base station. The detecting method includes: obtaining by a UE a transmission mode of a data channel configured by a base station; determining by the UE a first DCI format and a second DCI format that are corresponding to the transmission mode where PDCCH information corresponding to the first DCI format is transmitted in a precoding-based mode and PDCCH information corresponding to the second DCI format is transmitted in a single-antenna port mode or transmit diversity mode based on non-precoding; and detecting by the UE and in a subframe PDCCH information corresponding to the first DCI format and the second DCI format according to a mode in which the PDCCH information is transmitted.
Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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Declaration Date | Declaration Reference | Declaring Company | Specification Number | ||||||
5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP |
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Yes | Family Member | |||
4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member |
Specification Information
Specification Information
Technologies
Family Information
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Publication No | Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | |||||
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Declaration Date | Declaration Reference | Declaring Company | Specification Number | |||||||
CN102868480A | 4G | 05/08/2012 | ISLD-201208-003 | HUAWEI | Yes | Basis Patent | ||||
CN102868480A | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP |
S1
S2
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Yes | Family Member | |||
CN102868480A | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Basis Patent | ||||
CN102868480B | 4G | 05/08/2012 | ISLD-201208-003 | HUAWEI | Yes | Basis Patent | ||||
CN102868480B | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP |
S1
S2
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Yes | Family Member | |||
CN102868480B | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Basis Patent | ||||
EP2712109A1 | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP | Yes | Basis Patent | ||||
EP2712109A1 | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member | ||||
EP2712109A4 | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP | Yes | Basis Patent | ||||
EP2712109A4 | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member | ||||
EP2712109B1 | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP | Yes | Basis Patent | ||||
EP2712109B1 | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member | ||||
US2014119269A1 | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP |
S1
S2
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Yes | Family Member | |||
US2014119269A1 | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member | ||||
WO2013004157A1 | 5G | 13/09/2018 | ISLD-201809-293 | NOKIA CORP |
S1
S2
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Yes | Family Member | |||
WO2013004157A1 | 4G | 28/10/2018 | ISLD-201810-073 | NOKIA CORP | Yes | Family Member |
Publication No | Technology | Declaration Information | Specification Information | Explicitly Disclosed | Patent Type | Status | National Phase Entries | |||||
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Technologies
Multiple-Input Multiple-Output(MIMO)/Massive MIMO
Product
User Equipment (UE/Terminal)
Use Cases
Services
Claim
1. A method for detecting control signaling, comprising:
obtaining, by a user equipment (UE), a transmission mode of a data channel configured by a base station;
determining, by the UE, a first downlink control information (DCI) format and a second DCI format that are corresponding to the transmission mode, wherein physical downlink control channel (PDCCH) information corresponding to the first DCI format is transmitted in a precoding-based mode, and PDCCH information corresponding to the second DCI format is transmitted in a single-antenna port mode or transmit diversity mode based on non-precoding; and
detecting, by the UE and in a subframe, the PDCCH information corresponding to the first DCI format and the second DCI format according to a mode in which the PDCCH information is transmitted.
2. The method according to claim 1, wherein:
the PDCCH information corresponding to the first DCI format is carried in a data channel region of the subframe; and
the PDCCH information corresponding to the second DCI format is carried in a control channel region or the data channel region of the subframe.
3. The method according to claim 1, wherein the subframe is a multicast broadcast single frequency network (MBSFN) subframe, and the detecting, by the UE and in the subframe, the PDCCH information corresponding to the first DCI format and the second DCI format according to the mode in which the PDCCH information is transmitted comprises:
when the PDCCH information corresponding to the second DCI format is carried in a control channel region of the MBSFN subframe, detecting, by the UE and in the MBSFN subframe, the PDCCH information corresponding to the first DCI format based on a dedicated reference signal (DRS), and detecting the PDCCH information corresponding to the second DCI format based on a cell reference signal (CRS); and
when the PDCCH information corresponding to the second DCI format is carried in a data channel region of the MBSFN subframe, detecting, by the UE and in the MBSFN subframe, the PDCCH information corresponding to the first DCI format based on the DRS, and detecting the PDCCH information corresponding to the second DCI format based on the DRS or a truncated CRS.
4. The method according to claim 1, wherein the subframe is a non-MBSFN subframe, and the detecting, by the UE and in the subframe, the PDCCH information corresponding to the first DCI format and the second DCI format according to the mode in which the PDCCH information is transmitted comprises:
detecting, by the UE and in the non-MBSFN subframe, the PDCCH information corresponding to the first DCI format based on a DRS, and detecting the PDCCH information corresponding to the second DCI format based on the DRS or a CRS.
5. The method according to claim 1, wherein before the detecting, by the UE and in the subframe, the PDCCH information corresponding to the first DCI format and the second DCI format according to the mode in which the PDCCH information is transmitted, the method further comprises:
learning, by the UE by using radio resource control (RRC) dedicated signaling sent by the base station, that it is required to detect the PDCCH information corresponding to the first DCI format and the second DCI format.
6. A user equipment, comprising:
an obtaining unit, adapted to obtain a transmission mode of a data channel configured by a base station;
a determining unit, adapted to determine a first downlink control information (DCI) format and a second DCI format that are corresponding to the transmission mode obtained by the obtaining unit, wherein physical downlink control channel (PDCCH) information corresponding to the first DCI format is transmitted in a precoding-based mode, and PDCCH information corresponding to the second DCI format is transmitted in a single-antenna port mode or transmit diversity mode based on non-precoding; and
a detecting unit, adapted to detect, in a subframe and according to a mode in which the PDCCH information is transmitted, the PDCCH information corresponding to the first DCI format and the second DCI format that are determined by the determining unit.
7. The user equipment according to claim 6, wherein the subframe is a multicast broadcast single frequency network (MBSFN) subframe, and the detecting unit is specifically adapted to when the PDCCH information corresponding to the second DCI format is carried in a control channel region of the MBSFN subframe, detect, in the MBSFN subframe, the PDCCH information corresponding to the first DCI format based on a dedicated reference signal (DRS), and detect the PDCCH information corresponding to the second DCI format based on a cell reference signal (CRS); and
when the PDCCH information corresponding to the second DCI format is carried in a data channel region of the MBSFN subframe, detect, in the MBSFN subframe, the PDCCH information corresponding to the first DCI format based on the DRS, and detect the PDCCH information corresponding to the second DCI format based on the DRS or a truncated CRS.
8. The user equipment according to claim 6, wherein the subframe is a non-MBSFN subframe, and the detecting unit is specifically adapted to in the non-MBSFN subframe, detect the PDCCH information corresponding to the first DCI format based on a DRS, and detect the PDCCH information corresponding to the second DCI format based on the DRS or a CRS.
9. The user equipment according to claim 6, wherein the detecting unit is further adapted to learn, by using radio resource control (RRC) dedicated signaling sent by the base station, that it is required to detect the PDCCH information corresponding to the first DCI format and the second DCI format that are determined by the determining unit.
10. A method for sending control signaling, comprising:
configuring, by a base station, a transmission mode of a data channel;
determining, by the base station, a downlink control information (DCI) format corresponding to the transmission mode, wherein the DCI format is a first DCI format or a second DCI format, physical downlink control channel (PDCCH) information corresponding to the first DCI format is transmitted in a precoding-based mode, and PDCCH information corresponding to the second DCI format is transmitted in a single-antenna port mode or transmit diversity mode based on non-precoding; and
sending, by the base station and in a subframe, the PDCCH information corresponding to the DCI format to a user equipment (UE) according to a mode in which the PDCCH information is transmitted.
11. The method according to claim 10, wherein:
the PDCCH information corresponding to the first DCI format is carried in a data channel region of the subframe; and
the PDCCH information corresponding to the second DCI format is carried in a control channel region or the data channel region of the subframe.
12. The method according to claim 10, wherein before the sending, by the base station and in the subframe, the PDCCH information corresponding to the DCI format according to the mode in which the PDCCH information is transmitted, the method further comprises:
instructing, by the base station by sending radio resource control (RRC) dedicated signaling to the UE, the UE to detect the PDCCH information corresponding to the first DCI format and the second DCI format.
13. A base station, comprising:
a configuring unit, adapted to configure a transmission mode of a data channel;
a determining unit, adapted to determine a downlink control information (DCI) format corresponding to the transmission mode configured by the configuring unit, wherein the DCI format is a first DCI format or a second DCI format, physical downlink control channel (PDCCH) information corresponding to the first DCI format is transmitted in a precoding-based mode, and PDCCH information corresponding to the second DCI format is transmitted in a single-antenna port mode or transmit diversity mode based on non-precoding; and
a sending unit, adapted to send, in a subframe and according to a mode in which the PDCCH information is transmitted, the PDCCH information corresponding to the DCI format determined by the determining unit to a user equipment (UE).
14. The base station according to claim 13, wherein the sending unit is further adapted to instruct, by sending radio resource control (RRC) dedicated signaling to the UE, the UE to detect the PDCCH information corresponding to the first DCI format and the second DCI format.
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
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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.