A nearly optimal resource allocation algorithm for the downlink of OFDMA 2-D networks with multicell interference

N. Ksairi, P. Bianchi, P. Ciblat
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Abstract

In this paper, we address the problem of power control and subcarrier assignment for the downlink of a sectorized two-dimensional (2-D) OFDMA cellular network assuming statistical Channel State Information (CSI) and fractional frequency reuse. The latter reuse scheme has been recommended for several cellular systems such as WiMAX. In this context, we provide a resource allocation algorithm with low computational complexity that can be implemented in a distributed fashion without the intervention of any central controller. The performance of this allocation scheme is analyzed assuming fast fading Rayleigh channels and Gaussian distributed multicell interference. Interestingly, it is shown that the proposed algorithm is asymptotically equivalent to an optimal resource allocation i.e., its total transmit power is equal in the limit of large numbers of users to the transmit power associated with a global solution to the joint resource allocation problem.
多小区干扰下OFDMA 2-D网络下行链路近乎最优的资源分配算法
在本文中,我们讨论了在假设统计信道状态信息(CSI)和分数频率复用的情况下,分割二维(2d) OFDMA蜂窝网络下行链路的功率控制和子载波分配问题。后一种重用方案已被推荐用于若干蜂窝系统,如WiMAX。在这种情况下,我们提供了一种计算复杂度低的资源分配算法,可以在没有任何中央控制器干预的情况下以分布式方式实现。在快速衰落瑞利信道和高斯分布多小区干扰条件下,分析了该分配方案的性能。有趣的是,该算法渐近等价于最优资源分配,即在大量用户的限制下,其总发射功率等于联合资源分配问题全局解的发射功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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