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Power Allocation in Two-Hop Amplify-and-Forward MIMO Relay Systems With QoS Requirements

机译:具有QoS要求的两跳放大转发MIMO中继系统中的功率分配

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The problem of minimizing the total power consumption while satisfying different quality-of-service (QoS) requirements in a two-hop multiple-input multiple-output (MIMO) network with a single nonregenerative relay is considered. As shown by Y. Rong [“Multihop nonregenerative MIMO relays: QoS considerations,” IEEE Trans. Signal Process., vol. 59, no. 1, pp. 209-303, 2011] in [1], the optimal processing matrices for both linear and nonlinear transceiver architectures lead to the diagonalization of the source-relay-destination channel so that the power minimization problem reduces to properly allocating the available power over the established links. Unfortunately, finding the solution of this problem is numerically difficult as it is not in a convex form. To overcome this difficulty, existing solutions rely on the computation of upper- and lower-bounds that are hard to obtain or require the relaxation of the QoS constraints. In this work, a novel approach is devised for both linear and nonlinear transceiver architectures, which allows to closely approximate the solutions of the nonconvex power allocation problems with those of convex ones easy to compute in closed-form by means of multistep procedures of reduced complexity. Computer simulations are used to assess the performance of the proposed approach and to make comparisons with alternatives.
机译:考虑了在具有单个非再生中继器的两跳多输入多输出(MIMO)网络中最小化总功耗同时满足不同服务质量(QoS)要求的问题。如Y. Rong [“多跳非再生MIMO中继:QoS考虑”,IEEE Trans。信号处理,第一卷59,没有[1]中的第1卷,第209-303页,2011年],针对线性和非线性收发器架构的最佳处理矩阵会导致源-中继-目标信道的对角化,从而降低了功率最小化问题,从而适当地分配了可用的控制已建立的链接。不幸的是,在数字上很难找到该问题的解决方案,因为它不是凸形的。为了克服此困难,现有解决方案依赖于难以获得或需要放松QoS约束的上限和下限的计算。在这项工作中,针对线性和非线性收发器架构设计了一种新颖的方法,该方法允许通过降低复杂性的多步过程将非凸功率分配问题的解决方案与易于以闭合形式计算的凸功率解决方案近似解决。 。计算机模拟用于评估所提出方法的性能,并与替代方法进行比较。

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