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Distributed Sum-Rate Maximization Over Finite Rate Coordination Links Affected by Random Failures

机译:受随机故障影响的有限速率协调链路上的分布式求和率最大化

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The deployment of small cell networks is expected to yield a significant improvement of coverage and spectral efficiency, provided that radio resource management is properly handled. In particular, in view of a potential massive deployment of femto access points (FAP's), it is advisable to consider decentralized resource allocation mechanisms able to keep interference below a suitable threshold. However, purely decentralized schemes might well be spectrally inefficient. In this paper, we consider a local coordination scheme, where nearby FAP's exploit the availability of a wired backhaul (typically an x-DSL line) to exchange control data to enable a local coordination with the aim of improving spectral efficiency. Since the backhaul is prone to random (unpredictable) delay and packet drop and the exchanged data are necessarily quantized, we propose a distributed resource allocation mechanism that limits the effects of the impairments coming from a realistic backhaul model. In particular, using results from stochastic approximation theory, we propose a distributed Robbins-Monro scheme with provable convergence properties. Numerical results are provided to validate the theoretical findings. Finally, in the case where the packet drop probabilities are known (estimated), we show how to counteract the effect of failures through a proper weighting of the messages exchanged among neighbor FAP's.
机译:如果正确处理了无线电资源管理,则小型蜂窝网络的部署有望大大改善覆盖范围和频谱效率。特别是,鉴于可能会大量部署毫微微接入点(FAP),建议考虑能够将干扰保持在适当阈值以下的分散式资源分配机制。但是,纯粹的分散方案可能在频谱上效率低下。在本文中,我们考虑了一种本地协调方案,其中附近的FAP利用有线回程(通常是x-DSL线路)的可用性来交换控制数据,以实现本地协调,从而提高频谱效率。由于回程易于出现随机(不可预测的)延迟和数据包丢失,并且交换的数据必须进行量化,因此我们提出了一种分布式资源分配机制,该机制限制了来自实际回程模型的损害的影响。特别是,使用随机逼近理论的结果,我们提出了一种具有可证明收敛性质的分布式Robbins-Monro方案。提供数值结果以验证理论结果。最后,在已知丢包概率(估计)的情况下,我们展示了如何通过适当加权相邻FAP之间交换的消息来抵消失败的影响。

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