EP2689618B1

Methods for physical layer multi-point carrier aggregation and multi-point feedback configuration

Abstract

This record has no abstract on file.

EP2689618B1, drawing sheet 1
Sheet 1 of 12

Term

6.5 yearsleft in the term

Expires 22 March 2033.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

8 claims: 4 independent, 4 dependent

  1. 1
    A method, comprising:receiving (2101) an upper layer configuration, wherein a first UE identification, UE-ID, is associated with a first group of downlink, DL, and uplink, UL, component carriers and a second UE-ID is associated with a second group of DL and UL component carriers;receiving (2102) downlink control information via one or more downlink control channels on one or more DL component carriers, wherein the downlink control information comprises one or more downlink scheduling data;and decoding (2103) the downlink control information using the first UE-ID and the second UE-ID, characterized in that a first DL component carrier connected to a first base station with a first UE-ID is scheduled by a second DL component carrier connected to a second base station with a second UE-ID.
  2. 2
    The method of Claim 1, wherein the first group of DL and UL component carriers are connected to a first base station and the second group of DL and UL component carriers are connected to a second base station.
  3. 3
    The method of Claim 1, wherein the UE-ID is a Cell Radio Network Temporary Identifier, C-RNTI.
  4. 4
    The method of Claim 1, further comprising:coordinating the first UE-ID and the second UE-ID for the DL scheduler such that the DL scheduler schedules the first DL component carrier with the first UE-ID.
  5. 5
    A method, comprising:receiving (2101) an upper layer configuration, wherein a first UE identification, UE-ID, is associated with a first group of downlink, DL, and uplink, UL, component carriers and a second UE-ID is associated with a second group of DL and UL component carriers;receiving (2102) downlink control information via one or more downlink control channels on one or more DL component carriers, wherein the downlink control information comprises one or more uplink grants;and decoding (2103) the downlink control information using the first UE-ID and the second UE-ID, characterized in that a first UL component carrier connected to a first base station with a first UE-ID is scheduled by a second DL component carrier connected to a second base station with a second UE-ID.
  6. 6
    The method of Claim 5, further comprising:coordinating the first UE-ID and the second UE-ID for the DL scheduler such that the uplink grant schedules the first UL component carrier with the first UE-ID.
  7. 7
    A user equipment, UE (141), comprising:a configuration module (156) adapted to receive an upper layer configuration, wherein a first UE identification, UE-ID, is associated with a first group of downlink, DL, and uplink, UL, component carriers and a second UE-ID is associated with a second group of DL and UL component carriers;a receiver (150) adapted to receive downlink control information via one or more downlink control channels on one or more DL component carriers, wherein the downlink control information comprises one or more downlink scheduling data;and a decoding module (157) adapted to decode the downlink control information using the first UE-ID and the second UE-ID, characterized in that a first DL component carrier connected to a first base station with a first UE-ID is schedulable by a second DL component carrier connected to a second base station with a second UE-ID.
  8. 8
    A user equipment, UE (141), comprising:a configuration module (156) adapted to receive an upper layer configuration, wherein a first UE identification, UE-ID, is associated with a first group of downlink, DL, and uplink, UL, component carriers and a second UE-ID is associated with a second group of DL and UL component carriers;a receiver (150) adapted to receive downlink control information via one or more downlink control channels on one or more DL component carriers, wherein the downlink control information comprises one or more uplink grants;and a decoding module (157) adapted to decode the downlink control information using the first UE-ID and the second UE-ID, characterized in that a first UL component carrier connected to a first base station with a first UE-ID is scheduled by a second DL component carrier connected to a second base station with a second UE-ID.