首页> 外文会议>2012 IEEE 23rd International symposium on Personal Indoor and Mobile Radio Communications. >Resource allocation for maximizing weighted sum of per cell min-rate in multi-cell DF relay aided downlink OFDMA systems
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Resource allocation for maximizing weighted sum of per cell min-rate in multi-cell DF relay aided downlink OFDMA systems

机译:在多小区DF中继辅助下行链路OFDMA系统中用于最大化每小区最小速率加权和的资源分配

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This paper considers a multi-cell relay aided orthogonal frequency division multiple access (OFDMA) downlink system, in which all stations are coordinated by a central controller for resource allocation (RA). The decode-and-forward (DF) protocol with selection relaying (SR) is applied. The problem considered is the maximization of the weighted sum of per cell min-rate (WSMR) with a total power constraint in each cell. An iterative RA algorithm is proposed to optimize mode selection (decision whether the relay should help or not), subcarrier assignment (MSSA) and power allocation (PA) alternatively. Each iteration is composed of the MSSA stage and the PA stage. During the MSSA stage, instead of the original objective function, a lower bound is maximized leading to lower complexity. The lower complexity problem is decoupled into mixed integer linear programs (MILP) that can easily be solved by typical MILP solvers. During the PA stage, an algorithm based on single condensation and geometric programming PA (SC-GPPA) is designed to optimize PA with the tentative MSSA results. The convergence of the proposed RA algorithm is proven. Finally, the performance of the RA algorithm and the benefit of using SR are illustrated through numerical experiments.
机译:本文考虑了一种多小区中继辅助正交频分多址(OFDMA)下行链路系统,其中所有站均由中央控制器协调进行资源分配(RA)。应用带有选择中继(SR)的解码和转发(DF)协议。所考虑的问题是每个小区最小速率(WSMR)的加权总和在每个小区中具有总功率约束的最大化。提出了一种迭代RA算法,以优化模式选择(决定中继是否应提供帮助),子载波分配(MSSA)和功率分配(PA)的优化。每次迭代均由MSSA阶段和PA阶段组成。在MSSA阶段,下限被最大化而不是原始的目标函数,从而降低了复杂性。较低复杂度的问题被分解为混合整数线性程序(MILP),可以通过典型的MILP求解器轻松解决。在PA阶段,设计了一种基于单缩合和几何编程PA(SC-GPPA)的算法,以利用暂定MSSA结果优化PA。证明了所提出的RA算法的收敛性。最后,通过数值实验说明了RA算法的性能以及使用SR的好处。

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