Device and method for monitoring the control channel in a multicarrier system
The present invention relates to a method and device for monitoring the control channel in a multiple carrier system. A terminal determines an extended search space comprising a plurality of sub-search spaces, and each of the plurality of sub-search spaces corresponds to at least one of a plurality of scheduled component carriers. The terminal monitors a downlink control channel for the scheduled component carrier corresponding to each of the plurality of sub-search spaces. At least one of the plurality of sub-search spaces is a shared sub-search space corresponding to at least two of the plurality of scheduled component carriers.
1. A method for monitoring a control channel in a multiple carrier system, the method comprising:
determining an extended search space including a plurality of sub-search spaces in a control region of a subframe, each of the plurality of sub-search spaces corresponding to at least one of a plurality of scheduled component carriers;
monitoring downlink control channels for the scheduled component carriers corresponding to the plurality of sub-search spaces; and
receiving downlink control information for one of the scheduled component carriers on one of the downlink control channels that is successfully decoded,
wherein at least one of the plurality of sub-search spaces is a shared sub-search space corresponding to at least two of the plurality of scheduled component carriers.
2. The method of claim 1 , wherein a payload size of the downlink control information for each of the at least two of the plurality of scheduled component carriers corresponding to the shared sub-search space is the same.
3. The method of claim 1 , wherein the shared sub-search space is shared among the at least two of the plurality of scheduled component carriers according to a control channel element (CCE) aggregation level.
4. The method of claim 3 , wherein:
the shared sub-search space is shared among the at least two of the plurality of scheduled component carriers at a first CCE aggregation level having a number of first physical downlink control channel (PDCCH) candidates;
the shared sub-search space is not shared among the at least two of the plurality of scheduled component carriers at the first CCE aggregation level having a number of second PDCCH candidates; and
the number of first PDCCH candidates is smaller than the number of second PDCCH candidates.
5. The method of claim 1 , wherein the plurality of sub-search spaces have a same size.
6. The method of claim 1 , wherein at least one of the plurality of sub-search spaces has a different size than a size of other of the plurality of sub-search spaces.
7. A user equipment (UE) comprising:
a radio frequency unit configured to transmit and receive radio signals; and
a processor operatively connected to the radio frequency unit and configured to:
determine an extended search space including a plurality of sub-search spaces in a control region of a subframe, each of the plurality of sub-search spaces corresponding to at least one of a plurality of scheduled component carriers;
monitor downlink control channels for the scheduled component carriers corresponding to the plurality of sub-search spaces; and
receive downlink control information for one of the scheduled component carriers on one of the downlink control channels that is successfully decoded,
wherein at least one of the plurality of sub-search spaces is a shared sub-search space corresponding to at least two of the plurality of scheduled component carriers.
8. The UE of claim 7 , wherein a payload size of the downlink control information for each of the at least two of the plurality of scheduled component carriers corresponding to the shared sub-search space is the same.
9. The UE of claim 7 , wherein the shared sub-search space is shared among the at least two of the plurality of scheduled component carriers according to a control channel element (CCE) aggregation level.