Title :
Centralized and Decentralized Coordinated Scheduling with Muting
Author :
Agrawal, Rajeev ; Bedekar, Anand ; Kalyanasundaram, Suresh ; Arulselvan, Naveen ; Kolding, Troels ; Kroener, Hans
Abstract :
We compare the algorithms for centralized and decentralized multi-cell joint optimization of coordinated scheduling with muting. For conventional non-overlapping clusters of cooperating cells, we show that for the same latency of communication, an appropriate decentralized algorithm can equivalently achieve the same jointly optimal solution achieved by a centralized approach. In this decentralized algorithm, cells do not exchange CSIs of all users with other cells, but instead exchange per-cell benefit metrics. In non-overlapping clusters, border cells in a cluster do not coordinate with strong interferers outside the cluster. We introduce a new cluster design called Liquid Cluster which allows a cell to flexibly cooperate with all its relevant interferers. The decentralized algorithm easily extends to Liquid Clusters, performing better than conventional non-overlapping 9-cell clusters.
Keywords :
cellular radio; optimisation; pattern clustering; radiofrequency interference; scheduling; CSI; centralized coordinated scheduling; centralized multicell joint optimization; decentralized coordinated scheduling; decentralized multicell joint optimization; exchange per-cell benefit metrics; interference; liquid cluster design; muting; nonoverlapping cooperating cell cluster; Clustering algorithms; Gain; Joints; Liquids; Measurement; Optimization; Throughput;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2014 IEEE 79th
Conference_Location :
Seoul
DOI :
10.1109/VTCSpring.2014.7022856