Method And Apparatus For Coordinated Uplink Scheduling
Various methods and devices are provided to address the need for interference mitigation in heterogeneous wireless networks. In one method, a small cell network node provides (301) diversity reception for uplink communications of user equipment (UE) served by a macro cell network node. The small cell network node and the macro cell network node coordinate (302) the scheduling of uplink resource blocks so that the UE and user equipment served by the small cell network node are not scheduled during the same uplink resource blocks.
1 . A method comprising:
providing, by a small cell network node, diversity reception for uplink communications of user equipment (UE) served by a macro cell network node;
coordinating, by the small cell network node and the macro cell network node, the scheduling of uplink resource blocks so that the UE and user equipment served by the small cell network node are not scheduled during the same uplink resource blocks.
2 . The method as recited in claim 1 , wherein providing diversity reception for uplink communications of the UE comprises
supporting a soft handoff of the UE.
3 . The method as recited in claim 1 , wherein providing diversity reception for uplink communications of the UE comprises
supporting a virtual soft handoff (VSHO) of the UE.
4 . The method as recited in claim 1 , wherein coordinating the scheduling of uplink resource blocks comprises
establishing a scheduling pattern by which the UE and user equipment served by the small cell network node are not scheduled during the same uplink resource blocks.
5 . The method as recited in claim 1 , wherein coordinating the scheduling of uplink resource blocks comprises
communicating, by the macro cell network node to the small cell network node, information indicating the uplink resource blocks to which the UE has been scheduled;
scheduling the user equipment served by the small cell network node using the information from the macro cell network node to avoid overlapped scheduling.
6 . An article of manufacture comprising a processor-readable storage medium storing one or more software programs which when executed by one or more processors performs the steps of the method of claim 1 .
7 . An apparatus comprising:
a macro cell network node operative to serve a user equipment (UE); and
a small cell network node being configured to communicate with the macro cell network node,
wherein the small cell network node is operative to provide diversity reception for uplink communications of the UE and to serve a group of small cell user equipment,
wherein the small cell network node and the macro cell network node are operative to coordinate the scheduling of uplink resource blocks so that the UE and the group of small cell user equipment are not scheduled during the same uplink resource blocks.
8 . The apparatus as recited in claim 7 , wherein being operative to provide diversity reception for uplink communications of the UE comprises
being operative to support a soft handoff of the UE.
9 . The apparatus as recited in claim 7 , wherein being operative to provide diversity reception for uplink communications of the UE comprises
being operative to support a virtual soft handoff (VSHO) of the UE.
10 . The apparatus as recited in claim 7 , wherein being operative to coordinate the scheduling of uplink resource blocks comprises
being operative to establish a scheduling pattern by which the UE and the group of small cell user equipment are not scheduled during the same uplink resource blocks.
11 . The apparatus as recited in claim 7 , wherein being operative to coordinate the scheduling of uplink resource blocks comprises
the macro cell network node being operative to communicate information indicating the uplink resource blocks to which the UE has been scheduled and
the small cell network node being operative to schedule the group of small cell user equipment using the information from the macro cell network node to avoid overlapped scheduling.
12 . The apparatus as recited in claim 7 , wherein the macro cell network node and the small cell network node are operative to communicate via an X2 interface.
13 . The apparatus as recited in claim 7 , wherein the macro cell network node comprises an Enhanced NodeB (eNodeB).