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首页> 外文期刊>Communications Letters, IEEE >Joint Coding and Stochastic Data Transmission for Uplink Cloud Radio Access Networks
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Joint Coding and Stochastic Data Transmission for Uplink Cloud Radio Access Networks

机译:上行云无线电接入网的联合编码和随机数据传输

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摘要

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.
机译:我们研究使用量化和转发作为基础中继方案的上行链路云无线电接入网络。在所有先前的工作中,假定每个无线电单元(RU)选择的压缩率等于瞬时回程容量。在这封信中,我们考虑一个更通用的网络模型,为此,每个RU都配备一个队列,该队列的到达率等于压缩率,而离开率等于当前的回程容量。对于每个时隙,只要 队列稳定 ,它就可以选择比给定回程容量更高的压缩率。利用随机网络优化原理,我们提出了一种分布式算法来查找每个RU的压缩率,从而使 时间平均 总和率在排队条件下最大化稳定性。在最佳压缩策略下,在给定的时隙内,一些RU处于较高的压缩率下处于活动状态,而其他RU则处于静默状态,这与所有RU始终处于活动状态的常规方法完全不同。

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