Physical downlink control channel detection method and related apparatus
View Patent ↗Provided in the present application are a physical downlink control channel detection method and a related apparatus. A terminal device receives indication information sent by a network device side, wherein the indication information may include an association relationship between search space sets, and a monitoring mode of the terminal device.
1 . A detection method for a physical downlink control channel, comprising:
receiving indication information of a Physical Downlink Control Channel (PDCCH), sent by a network device side, wherein the indication information at least comprises an association relationship between search space sets and a specific monitoring mode:
determining associated monitoring occasions or associated search space sets of the PDCCH according to the indication information; and
detecting the PDCCH according to the associated monitoring occasions or associated search space sets;
wherein the search space sets with the association relationship comprise a first search space set and a second search space set;
wherein one span or one slot is one monitoring unit;
wherein the detecting the PDCCH according to the associated monitoring occasions or associated search space sets, comprises:
determining a PDCCH candidate pair; wherein the PDCCH candidate pair comprises a first PDCCH candidate and a second PDCCH candidate, the first PDCCH candidate belongs to a first monitoring unit, and the second PDCCH candidate belongs to a second monitoring unit; and
determining, based on a monitoring capability of the terminal device, a candidate detection unit from the first monitoring unit and the second monitoring unit for detection.
2 . The method according to claim 1 , wherein the determining the associated monitoring occasions of the PDCCH according to the indication information, comprises:
in a case that the specific monitoring mode is a per span monitoring mode, determining that an association mode of the monitoring occasions is associating a monitoring occasion of the first search space set with a monitoring occasion of the second search space set based on the indication information.
3 . The method according to claim 1 , wherein the determining the associated monitoring occasions of the PDCCH according to the indication information, comprises:
in a case that the specific monitoring mode is a per span monitoring mode, determining that a repeated transmission mode of the PDCCH is intra-span repeated transmission based on the indication information: or,
in a case that the indication information further comprises configuration information of intra-span repeated transmission, determining that a repeated transmission mode of the PDCCH is the intra-span repeated transmission:
wherein the associated monitoring occasions are within a same span:
wherein, for the intra-span repeated transmission mode, in a case that the first search space set and the second search space set in the same span have a same quantity of monitoring occasions, monitoring occasions of the first search space set within the span and monitoring occasions of the second search space set within the span are the associated monitoring occasions.
4 . The method according to claim 1 , wherein the determining the associated monitoring occasions of the PDCCH according to the indication information, comprises:
in a case that the specific monitoring mode is a per span monitoring mode, determining that a repeated transmission mode of the PDCCH is inter-span repeated transmission based on the indication information; or,
in a case that the indication information further comprises that a repeated transmission mode of the PDCCH is inter-span repeated transmission, determining that the associated monitoring occasions are among different spans;
wherein, for the inter-span repeated transmission mode, two spans satisfying a first predefined relationship are associated spans;
wherein for the associated spans, any of following cases is comprised:
case 1: determining that in the associated spans, a monitoring occasion in the first search space set in any span and a monitoring occasion in the second search space set in another span are the associated monitoring occasions; and
case 2: determining that in the associated spans, a monitoring occasion in the first search space set in any span and a monitoring occasion in the first search space set in another span are the associated monitoring occasions;
wherein the method further comprises: in a case that an unassociated span exists, determining that monitoring occasions in the unassociated span are all unassociated monitoring occasions, or determining that a repeated transmission mode of the PDCCH in the unassociated span is intra-slot repeated transmission.
5 . The method according to claim 1 , wherein the determining the associated monitoring occasions of the PDCCH according to the indication information, comprises:
in a case that the specific monitoring mode is a per slot monitoring mode and the indication information further comprises configuration information that a repeated transmission mode of the PDCCH is inter-slot repeated transmission, determining that the associated monitoring occasions are in different slots;
wherein, for the inter-slot repeated transmission mode, two slots satisfying a second predefined relationship are associated slots;
wherein for the associated slots, any of following cases is comprised:
case 1: in the associated slots, a monitoring occasion in the first search space set in any slot and a monitoring occasion in the second search space set in another slot are the associated monitoring occasions; and
case 2: in the associated slots, a monitoring occasion in the first search space set in any slot and a monitoring occasion in the first search space set in another slot are the associated monitoring occasions;
wherein the method further comprises: in a case that an unassociated slot exists, determining that monitoring occasions in the unassociated slot are all unassociated monitoring occasions, or determining that a repeated transmission mode of the PDCCH in the unassociated slot is intra-slot repeated transmission.
6 . The method according to claim 1 , wherein the determining the associated monitoring occasions of the PDCCH according to the indication information, comprises:
in a case that the specific monitoring mode is a per slot monitoring mode, determining that a repeated transmission mode of the PDCCH is intra-slot repeated transmission based on the indication information; or
in a case that the specific monitoring mode is a per span monitoring mode, determining that a repeated transmission mode of the PDCCH is intra-slot repeated transmission based on the indication information; or
in a case that the specific monitoring mode is a per span monitoring mode and the indication information further comprises configuration information of intra-slot repeated transmission, determining that a repeated transmission mode of the PDCCH is the intra-slot repeated transmission;
wherein, for the intra-slot repeated transmission mode, in a case that the first search space set and the second search space set in a same slot have a same quantity of monitoring occasions, monitoring occasions of the first search space set within the slot and monitoring occasions of the second search space set within the slot are the associated monitoring occasions.
7 . The method according to claim 1 , wherein complexity of the first candidate detection unit is K, complexity of the first partial candidate detection unit is first partial complexity, and complexity of the second partial candidate detection unit is second partial complexity:
wherein the first partial complexity is same as the second partial complexity, or the first partial complexity is different from the second partial complexity.
8 . The method according to claim 7 , wherein a sum of the first partial complexity and the second partial complexity is K.
9 . The method according to claim 1 , wherein one span or one slot is one monitoring unit;
wherein the detecting the PDCCH according to the associated monitoring occasions, comprises:
for each monitoring unit, determining complexity of one candidate detection unit in the associated monitoring occasions as first complexity, and determining complexity of one candidate detection unit of any unassociated monitoring occasion as second complexity: wherein the candidate detection unit is a single PDCCH candidate or a PDCCH candidate pair; and
determining, based on a monitoring capability of the terminal device in the monitoring unit, a candidate detection unit from candidate detection units in the monitoring unit for detection.
10 . The method according to claim 9 , wherein a partial candidate detection unit in two associated monitoring occasions in the monitoring unit belongs to the monitoring unit, and partial complexity in the first complexity belongs to the monitoring unit;
wherein the partial candidate detection unit is a candidate detection unit, which is within the monitoring unit, in the two associated monitoring occasions in the monitoring unit.
11 . The method according to claim 9 , wherein a complexity division mode of partial complexity comprises at least one of case 1, case 2, case 3, case 4, or case 5:
case 1: complexity of a partial candidate detection unit in one candidate detection unit in the associated monitoring occasions is third complexity, and a sum of third complexities of all partial candidate detection units in the one candidate detection unit is the first complexity:
case 2: in a case that the network device side configures independent decoding, complexity of a partial candidate detection unit of the monitoring unit is half of the first complexity:
case 3: the complexity of the partial candidate detection unit of the monitoring unit is half of the first complexity:
case 4: the complexity of the partial candidate detection unit of the monitoring unit is the second complexity:
case 5: in a case that the network device side configures joint decoding, complexity of a partial candidate detection unit of the monitoring unit is third complexity, and a sum of third complexities of all partial candidate detection units in one candidate detection unit is the first complexity.
12 . A detection method for a physical downlink control channel, comprising:
sending indication information of a Physical Downlink Control Channel (PDCCH) to a terminal device, wherein the indication information at least comprises an association relationship between search space sets and a specific monitoring mode;
wherein the indication information is configured to determine associated monitoring occasions or associated search space sets of the PDCCH according to the indication information and detect the PDCCH according to the associated monitoring occasions or associated search space sets by the terminal device;
wherein the search space sets with the association relationship comprise a first search space set and a second search space set;
wherein one span or one slot is one monitoring unit;
wherein the PDCCH is detected according to the associated monitoring occasions or associated search space sets by:
determining a PDCCH candidate pair; wherein the PDCCH candidate pair comprises a first PDCCH candidate and a second PDCCH candidate, the first PDCCH candidate belongs to a first monitoring unit, and the second PDCCH candidate belongs to a second monitoring unit; and
determining, based on a monitoring capability of the terminal device, a candidate detection unit from the first monitoring unit and the second monitoring unit for detection.
13 . The method according to claim 12 , wherein, in a case that the specific monitoring mode is a per span monitoring mode, the indication information further comprises configuration information of intra-span repeated transmission: or,
in a case that the specific monitoring mode is a per slot monitoring mode, the indication information further comprises configuration information that a repeated transmission mode of the PDCCH is inter-slot repeated transmission: or,
in a case that the specific monitoring mode is a per span monitoring mode, the indication information further comprises configuration information of intra-slot repeated transmission.
14 . A terminal device, comprising: a processor, a memory and a transceiver; wherein:
the memory is configured to store a computer program:
the transceiver is configured to receive and send data under control of the processor; and
the processor is configured to read the computer program in the memory and perform:
receiving indication information of a Physical Downlink Control Channel (PDCCH) sent by a network device side, wherein the indication information at least comprises an association relationship between search space sets and a specific monitoring mode:
determining associated monitoring occasions or associated search space sets of the PDCCH according to the indication information; and
detecting the PDCCH according to the associated monitoring occasions or associated search space sets;
wherein the search space sets with the association relationship comprise a first search space set and a second search space set;
wherein one span or one slot is one monitoring unit;
wherein in a case of detecting the PDCCH according to the associated monitoring occasions or associated search space sets, the processor is configured to:
determine a PDCCH candidate pair; wherein the PDCCH candidate pair comprises a first PDCCH candidate and a second PDCCH candidate, the first PDCCH candidate belongs to a first monitoring unit, and the second PDCCH candidate belongs to a second monitoring unit; and
determine, based on a monitoring capability of the terminal device, a candidate detection unit from the first monitoring unit and the second monitoring unit for detection.
15 . The terminal device according to claim 14 , wherein complexity of the first candidate detection unit is K, complexity of the first partial candidate detection unit is first partial complexity, and complexity of the second partial candidate detection unit is second partial complexity:
wherein the first partial complexity is same as the second partial complexity, or the first partial complexity is different from the second partial complexity.
16 . The terminal device according to claim 15 , wherein a sum of the first partial complexity and the second partial complexity is K.
17 . A network device side, comprising: a processor, a memory and a transceiver; wherein:
the memory is configured to store a computer program:
the transceiver is configured to receive and send data under control of the processor; and
the processor is configured to read the computer program in the memory and perform the method according to claim 12 .