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Resource Allocation for Downlink Cellular OFDMA Systems—Part II: Practical Algorithms and Optimal Reuse Factor

机译:下行蜂窝OFDMA系统的资源分配—第二部分:实用算法和最佳重用因子

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In a companion paper (see “Resource Allocation for Downlink Cellular OFDMA Systems—Part I: Optimal Allocation,” IEEE Trans. Signal Process., vol. 58, no. 2, pp. 720–734, Feb. 2010), we characterized the optimal resource allocation in terms of power control and subcarrier assignment, for a downlink sectorized OFDMA system impaired by multicell interference. In our model, the network is assumed to be one dimensional (linear) for the sake of analysis. We also assume that a certain part of the available bandwidth is likely to be reused by different base stations while that the other part of the bandwidth is shared in an orthogonal way between these base stations. The optimal resource allocation characterized in Part I is obtained by minimizing the total power spent by the network under the constraint that all users'' rate requirements are satisfied. It is worth noting that when optimal resource allocation is used, any user receives data either in the reused bandwidth or in the protected bandwidth, but not in both (except for at most one pivot-user in each cell). We also proposed an algorithm that determines the optimal values of users'' resource allocation parameters. As a matter of fact, the optimal allocation algorithm proposed in Part I requires a large number of operations. In the present paper, we propose a distributed practical resource allocation algorithm with low complexity. We study the asymptotic behavior of both this simplified resource allocation algorithm and the optimal resource allocation algorithm of Part I as the number of users in each cell tends to infinity. Our analysis allows to prove that the proposed simplified algorithm is asymptotically optimal, i.e., it achieves the same asymptotic transmit power as the optimal algorithm as the number of users in each cell tends to infinity. As a byproduct of our analysis, we characterize the optimal value of the frequency reus-ne factor. Simulations sustain our claims and show that substantial performance improvements are obtained when the optimal value of the frequency reuse factor is used.
机译:在随附的论文中(请参见“下行链路蜂窝OFDMA系统的资源分配-第一部分:最优分配”,IEEE Trans。Signal Process,第58卷,第2期,第720-734页,2010年2月),我们对在功率控制和子载波分配方面,针对受到多小区干扰损害的下行链路扇区化OFDMA系统的最佳资源分配。在我们的模型中,为了进行分析,假定网络是一维(线性)的。我们还假设可用带宽的特定部分可能被不同的基站重用,而带宽的另一部分则以正交方式在这些基站之间共享。第一部分描述的最佳资源分配是在满足所有用户速率要求的约束下,通过使网络花费的总功率最小化而获得的。值得注意的是,当使用最佳资源分配时,任何用户都可以在重用带宽或受保护带宽中接收数据,但不能同时在两者中接收数据(每个小区中最多有一个枢轴用户除外)。我们还提出了一种确定用户资源分配参数最佳值的算法。实际上,第一部分中提出的最优分配算法需要大量操作。在本文中,我们提出了一种复杂度较低的分布式实用资源分配算法。由于每个小区中的用户数趋于无穷大,因此我们研究了这种简化的资源分配算法和第I部分的最佳资源分配算法的渐近行为。我们的分析可以证明所提出的简化算法是渐近最优的,即当每个小区中的用户数趋于无穷大时,它实现了与最优算法相同的渐近发射功率。作为我们分析的副产品,我们描述了频率复用系数的最佳值。仿真结果支持了我们的主张,并表明当使用频率复用因子的最佳值时,可以显着提高性能。

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