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A chunk-based resource allocation scheme for downlink MIMO-OFDMA channel using linear precoding

机译:使用线性预编码的下行链路MIMO-OFDMA信道的基于块的资源分配方案

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This paper presents a novel chunk-based resource allocation scheme for MIMO-OFDMA multiuser downlink channel. In chunk-based resource allocation, a number of contiguous subcarriers of each OFDM symbol are considered as a chunk and resource allocation is performed on chunk-by-chunk basis. Herein, an optimization problem is formulated that aims to maximize system sum rate under an average power constraint per chunk when Zero Forcing Beamforming (ZFB) is used for inter-user interference elimination within chunks. Under this framework, a low-complexity resource allocation algorithm is presented that exploits frequency and space correlation of wireless channels and jointly solves the problems of chunk allocation and power allocation. Simulation results show that the proposed algorithm performs closely to the optimal solution of the examined problem.
机译:本文提出了一种新颖的基于块的MIMO-OFDMA多用户下行链路资源分配方案。在基于块的资源分配中,每个OFDM符号的多个连续子载波被认为是块,并且在逐块的基础上执行资源分配。在此,提出了一种优化问题,其旨在在将零强制波束成形(ZFB)用于组块内的用户间干扰消除时,在每个组块的平均功率约束下最大化系统求和率。在此框架下,提出了一种低复杂度的资源分配算法,该算法利用无线信道的频率和空间相关性,共同解决组块分配和功率分配问题。仿真结果表明,所提算法与所研究问题的最优解性能相近。

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