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Iterative Resource Allocation for Maximizing Weighted Sum Min-Rate in Downlink Cellular OFDMA Systems

机译:下行蜂窝OFDMA系统中用于最大化加权总和最小速率的迭代资源分配

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This paper considers the downlink of a cellular orthogonal frequency division multi-access (OFDMA) system, in which multiple base stations (BSs) are coordinated by a centralized resource allocation algorithm. We address the problem of maximizing the weighted sum of the minimal user rates (WSMR) of coordinated cells subject to a total power constraint at each BS, in terms of jointly optimizing coordinated BSs' subcarrier and power allocation. In particular, the solution of this problem corresponds to a resource allocation that guarantees similar rates to all users in each cell. An iterative algorithm is proposed to optimize the subcarrier allocation and the power allocation alternatively, so that the WSMR keeps increasing until convergence. In each iteration, the subcarrier allocation is updated by solving a mixed integer linear program for each cell, while the power allocation is updated by solving a successive set of convex optimization problems with a duality-based numerical algorithm. The effectiveness of the algorithm is illustrated by numerical experiments.
机译:本文考虑了蜂窝正交频分多址(OFDMA)系统的下行链路,其中多个基站(BS)通过集中式资源分配算法进行协调。我们通过联合优化协作式基站的子载波和功率分配来解决最大化受每个基站总功率约束的协作式小区的最小用户速率(WSMR)的加权和的问题。特别地,该问题的解决方案对应于资源分配,该资源分配保证了与每个小区中的所有用户相似的费率。提出了一种迭代算法来交替优化子载波分配和功率分配,以使WSMR不断增加直至收敛。在每次迭代中,通过求解每个单元的混合整数线性程序来更新子载波分配,而功率分配通过使用基于对偶性的数值算法求解连续的凸优化问题集来更新。数值实验说明了该算法的有效性。

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