Method and apparatus for determining control resources based on common signal indication information
A communication method includes detecting a first common signal. The first common signal belongs to a first set. The first set includes at least two common signals having different frequency positions. The first common signal carries first indication information. The communication method also includes determining a first control resource based on the first indication information. The communication method further includes receiving first downlink control information (DCI) on the first control resource. The first DCI is used to schedule a system message.
1 . A communication method, comprising:
detecting a first common signal, wherein the first common signal belongs to a first set, and the first set comprises at least two common signals having different frequency positions, and the first common signal carries first indication information, wherein the first indication information indicates a frequency domain position of the first common signal and a first frequency offset;
determining a frequency domain position of a first control resource based on the frequency domain position of the first common signal and the first frequency offset indicated by the first indication information; and
receiving first downlink control information (DCI) on the first control resource, wherein the first DCI is used to schedule a system message.
2 . The communication method according to claim 1 , wherein
the first indication information indicates a frequency domain position of the first common signal and a first frequency offset; and
the determining the first control resource based on the first indication information comprises:
determining a frequency domain position of a reference common signal based on the frequency domain position of the first common signal, wherein the first set comprises the reference common signal; and
determining a frequency domain position of the first control resource based on the frequency domain position of the reference common signal and the first frequency offset.
3 . The communication method according to claim 2 , wherein
the first indication information further indicates an index of the first common signal in the first set; and
the determining the frequency domain position of the reference common signal based on the frequency domain position of the first common signal comprises:
determining the frequency domain position of the reference common signal based on the frequency domain position of the first common signal, the index of the first common signal in the first set, an index of the reference common signal in the first set, and a pattern of the first set.
4 . The communication method according to claim 3 , further comprising:
obtaining first information, wherein the first information indicates an index of the pattern of the first set,
wherein the pattern of the first set defines a time-frequency position of each common signal in the first set and an index of each common signal in the first set.
5 . The communication method according to claim 1 , wherein the first common signal comprises a synchronization signal and a physical broadcast channel, and the first indication information is carried in a master information block transmitted on the physical broadcast channel.
6 . The communication method according to claim 1 , further comprising:
obtaining first information indicating an index of a pattern of the first set, wherein the pattern of the first set defines relative time-frequency positions of each common signal in the first set within a time domain periodicity and a frequency domain unit; and
determining the frequency domain position of the first common signal based on a detected time-frequency position of the first common signal and the pattern of the first set.
7 . A communication method, comprising:
sending a first common signal, wherein the first common signal belongs to a first set, the first set comprises at least two common signals having different frequency positions, the first common signal carries first indication information, wherein the first indication information indicates a frequency domain position of the first common signal and a first frequency offset, and the first indication information is used to determine a frequency domain position of a first control resource based on the frequency domain position of the first common signal and the first frequency offset; and
sending first downlink control information (DCI) on the first control resource, wherein the first DCI is used to schedule a system message.
8 . The communication method according to claim 7 , further comprising:
sending a second common signal,
wherein
the second common signal belongs to the first set, a frequency position of the second common signal is different from the frequency position of the first common signal, the second common signal comprises second indication information, and the second indication information is used to determine a second control resource;
the second indication information indicates a frequency domain position of the second common signal and a second frequency offset; and
the first frequency offset is different from the second frequency offset.
9 . The communication method according to claim 7 , wherein the first indication information indicates a time domain position of the first common signal and a first time offset.
10 . The communication method according to claim 9 , further comprising:
sending a third common signal,
wherein
the third common signal belongs to the first set, a time domain position of the third common signal is identical to the time domain position of the first common signal, the third common signal comprises third indication information, and the third indication information is used to determine a third control resource;
the third indication information indicates the time domain position of the third common signal and a third time offset; and
the first time offset is different from the third time offset.
11 . A communication apparatus, comprising:
at least one processor; and
a memory having instructions stored thereon that, when executed by the at least one processor, the communication apparatus to:
detect a first common signal, wherein the first common signal belongs to a first set, and the first set comprises at least two common signals having different frequency positions, and the first common signal carries first indication information, wherein the first indication information indicates a frequency domain position of the first common signal and a first frequency offset;
determine a frequency domain position of a first control resource based on the frequency domain position of the first common signal and the first frequency offset indicated by the first indication information; and
receive first downlink control information (DCI) on the first control resource,
wherein the first DCI is used to schedule a system message.
12 . The communication apparatus according to claim 11 , wherein
the first indication information indicates a frequency domain position of the first common signal and a first frequency offset; and
the communication apparatus is further caused to:
determine a frequency domain position of a reference common signal based on the frequency domain position of the first common signal, wherein the first set comprises the reference common signal; and
determine a frequency domain position of the first control resource based on the frequency domain position of the reference common signal and the first frequency offset.
13 . The communication apparatus according to claim 12 , wherein
the first indication information further indicates an index of the first common signal in the first set; and
the communication apparatus is further caused to:
determine the frequency domain position of the reference common signal based on the frequency domain position of the first common signal, the index of the first common signal in the first set, an index of the reference common signal in the first set, and a pattern of the first set.
14 . The communication apparatus according to claim 13 , wherein the communication apparatus is further caused to:
obtain first information,
wherein
the first information indicates an index of the pattern of the first set, and
the pattern of the first set defines a time-frequency position of each common signal in the first set and an index of each common signal in the first set.
15 . The communication apparatus according to claim 11 , wherein the first set comprises a plurality of common signals transmitted with different beam directions, and wherein control resources corresponding to the plurality of common signals have different frequency domain positions to enable transmission of the first DCI with different beams.
16 . The communication apparatus according to claim 11 , wherein the communication apparatus is further caused to:
obtain first information indicating an index of a pattern of the first set, wherein the pattern of the first set defines relative time-frequency positions of each common signal in the first set within a time domain periodicity and a frequency domain unit; and
determine the frequency domain position of the first common signal based on a detected time-frequency position of the first common signal and the pattern of the first set.
17 . A communication apparatus, comprising:
at least one processor; and
a memory having instructions stored thereon that, when executed by the at least one processor, the communication apparatus to:
send a first common signal, wherein the first common signal belongs to a first set, the first set comprises at least two common signals having different frequency positions, the first common signal carries first indication information, wherein the first indication information indicates a frequency domain position of the first common signal and a first frequency offset, and the first indication information is used to determine a frequency domain position of a first control resource based on the frequency domain position of the first common signal and the first frequency offset; and
send first downlink control information (DCI) on the first control resource, wherein the first DCI is used to schedule a system message.
18 . The communication apparatus according to claim 17 , wherein the communication apparatus is further caused to:
send a second common signal,
wherein
the second common signal belongs to the first set, a frequency position of the second common signal is different from the frequency position of the first common signal, the second common signal comprises second indication information, and the second indication information is used to determine a second control resource;
the second indication information indicates a frequency domain position of the second common signal and a second frequency offset; and
the first frequency offset is different from the second frequency offset.
19 . The communication apparatus according to claim 17 , wherein the first indication information indicates a time domain position of the first common signal and a first time offset.
20 . The communication apparatus according to claim 19 , wherein the communication apparatus is further caused to:
send a third common signal,
wherein
the third common signal belongs to the first set, a time domain position of the third common signal is identical to the time domain position of the first common signal, the third common signal comprises third indication information, and the third indication information is used to determine a third control resource;
the third indication information indicates the time domain position of the third common signal and a third time offset; and
the first time offset is different from the third time offset.