Title :
Joint Coding and Stochastic Data Transmission for Uplink Cloud Radio Access Networks
Author :
Song-Nam Hong ; Joongheon Kim
Author_Institution :
Ming Hsieh Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
Abstract :
We study the uplink cloud radio access networks using quantize and forward as an underlying relaying scheme. In all previous works, each radio unit (RU) is assumed to choose a compression rate equal to an instantaneous backhaul capacity. In this letter, we consider a more general network model for which each RU is equipped with a queue whose arrival rate is equal to a compression rate and departure rate is equal to a current backhaul capacity. For each time slot, it can choose a higher compression rate than the given backhaul capacity as long as the queue is stable. Using the principle of stochastic network optimization, we present a distributed algorithm to find the compression rate of each RU such that a time-averaged sum-rate is maximized subject to the queue stability. Under the optimal compression policy, some of RUs are active with a higher compression rate and the others are silent, for a given time slot, which is completely different from the conventional approach that all RUs are always active.
Keywords :
cellular radio; cloud computing; data communication; data compression; encoding; queueing theory; radio access networks; relay networks (telecommunication); stability; stochastic systems; telecommunication computing; arrival rate; backhaul capacity; coding; compression rate; departure rate; optimal compression policy; queue stability; radio unit; stochastic data transmission; stochastic network optimization; time slot; time-averaged sum-rate; underlying relaying scheme; uplink cloud radio access networks; Encoding; Joints; Optimization; Radio access networks; Signal to noise ratio; Stochastic processes; Uplink; Cloud radio access network; quantize and forward; stochastic network optimization;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2014.2343614