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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Multistage RLS Subcarrier-Combining Method for Uplink Quasi-Synchronous MC-CDMA
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Multistage RLS Subcarrier-Combining Method for Uplink Quasi-Synchronous MC-CDMA

机译:上行准同步MC-CDMA的多级RLS子载波合并方法

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摘要

In order to improve the performance of multicarrier code division multiple access (MC-CDMA) in the uplink channel, quasi-synchronous MC-CDMA with minimum-mean-square-error (MMSE)-based subcarrier-combining method is effective. However, conventional MMSE methods require a lot of pilot symbols for derivation of optimal weights. In this paper, in order to reduce the number of pilot symbols for uplink MC-CDMA systems, we propose a multistage recursive-least-square (MS-RLS) method for the derivation of the weights for the MMSE subcarrier combining. In the MS-RLS, the received symbols are stored in the buffer memory, and the RLS algorithm is repeatedly performed with a multistage structure by using the same pilot symbols. In this method, the weights and the inverse matrices of correlation matrices of the adjacent subcarriers are utilized for the initial values of the next-stage weight updating. Through computer simulation, we confirm that the performance of MC-CDMA in the uplink channel is improved by using the proposed MS-RLS method, even with short pilot symbols.
机译:为了提高上行链路信道中的多载波码分多址(MC-CDMA)的性能,基于最小均方误差(MMSE)的子载波合并方法的准同步MC-CDMA是有效的。然而,常规的MMSE方法需要大量的导频符号来推导最佳权重。在本文中,为了减少上行链路MC-CDMA系统的导频符号数量,我们提出了一种多级递归最小二乘(MS-RLS)方法,以推导MMSE子载波合并的权重。在MS-RLS中,将接收到的符号存储在缓冲存储器中,并且通过使用相同的导频符号以多级结构重复执行RLS算法。在该方法中,相邻子载波的权重和相关矩阵的逆矩阵被用于下一阶段权重更新的初始值。通过计算机仿真,我们确认即使使用短导频符号,使用所提出的MS-RLS方法也可以提高MC-CDMA在上行链路信道中的性能。

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