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Distributed power control for uplink virtual multiple-input multiple-output cellular system

机译:上行虚拟多输入多输出蜂窝系统的分布式功率控制

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摘要

The authors study the distributed power control scheme for uplink virtual multiple-input multiple-output (V-MIMO) cellular system, where multi-user equipments (UEs) with single antenna share the same time and frequency resource block. Under the target signal-to-interference-plus-noise ratio and the maximum transmit power constraints, each UE??s power is optimised to minimise the total transmit power through iterative and fully distributed manner. Since the interference of the uplink V-MIMO cellular system not only depends on the UEs transmit power but also on the receiver structure, the convergence properties of the V-MIMO power control scheme rely on specific receiver structure. The authors demonstrate that the well-known standard power control (SPC) for the single-input single-output cellular system also converges to a unique fixed optimal point for the V-MIMO cellular system with zero-forcing and minimum mean square error receiver when the system is feasible. When the system is infeasible, SPC deteriorates. Then the authors present a distributed power control algorithm with gradual soft removal. The algorithm considers different interference tolerance of UEs and removes non-supported UEs with different priorities in order to reduce the outage ratio. The authors prove that their algorithm converges to a unique fixed point. The significant advantage of convergence, outage ratio and energy consummation are also proven by simulations.
机译:作者研究了上行虚拟多输入多输出(V-MIMO)蜂窝系统的分布式功率控制方案,该系统中具有单个天线的多用户设备(UE)共享相同的时间和频率资源块。在目标信噪比和最大发射功率约束下,每个UE的功率都经过优化,以通过迭代和完全分布式的方式使总发射功率最小。由于上行链路V-MIMO蜂窝系统的干扰不仅取决于UE的发射功率,而且还取决于接收机的结构,因此V-MIMO功率控制方案的收敛特性取决于特定的接收机结构。作者证明,对于单输入单输出蜂窝系统,众所周知的标准功率控制(SPC)还可收敛到具有零强迫和最小均方误差接收器的V-MIMO蜂窝系统的唯一固定最佳点。该系统是可行的。当系统不可行时,SPC会恶化。然后,作者提出了一种具有逐步软消除功能的分布式功率控制算法。该算法考虑了UE的不同干扰容限,并删除了优先级不同的不支持的UE,以降低断电率。作者证明他们的算法收敛到唯一的固定点。仿真也证明了收敛,断电率和能量消耗的显着优势。

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  • 来源
    《Communications, IET》 |2012年第12期|p.1812-1820|共9页
  • 作者

    Chen L.; Wei G.;

  • 作者单位

    University of Science and Technology of China, People??s Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
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