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Energy Aware Optimal Resource Allocation in Backhaul Constraint Wireless Networks: A Two Base Stations Scenario

机译:回程约束无线网络中的能源感知最佳资源分配:两个基站方案

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In future wireless communication systems, the capacity constrained backhaul gradually becomes bottleneck both in spectrum efficiency and energy efficiency, especially in joint processing of LTE-Advanced. This paper addresses the issue of energy aware resource allocation with limited backhaul capacity in uplink cooperative reception, where two base stations (BSs) equipped with single-antenna each serving multiple users with single-antenna via multicarrier are considered. We propose a novel energy efficient cooperative scheme based on compress-and-forward and user pairing to solve the problem in two base stations scenario. In order to maximize system throughput and increase energy efficiency under the limited backhaul capacity constraint, we formulate the joint optimization problem of user pairing, subcarrier mapping, and backhaul capacity sharing between different pairs (subcarriers). An energy efficient algorithm based on alternating optimization strategy and perfect mapping is proposed to solve this mixed integer programming problem. Simulations show that this allocation algorithm can improve the system capacity and energy efficiency significantly compared with the blind alternatives.
机译:在未来的无线通信系统中,受容量限制的回程逐渐成为频谱效率和能量效率的瓶颈,特别是在LTE-Advanced的联合处理中。本文解决了上行协作接收中具有有限回程容量的节能资源分配问题,其中考虑了配备有单天线的两个基站(BS),每个基站通过多载波为多个用户提供单天线服务。我们提出了一种基于压缩转发和用户配对的新型节能合作方案,以解决两个基站场景中的问题。为了在有限的回程容量约束下最大化系统吞吐量并提高能源效率,我们制定了用户配对,子载波映射以及不同对(子载波)之间的回程容量共享的联合优化问题。针对混合整数规划问题,提出了一种基于交替优化策略和完美映射的节能算法。仿真表明,与盲目选择相比,该分配算法可以显着提高系统容量和能源效率。

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