Receiver architectures for OFDMA systems with subband carrier allocation

K. Maliatsos, A. Adamis, P. Constantinou
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引用次数: 16

Abstract

OFDM systems are very sensitive in phase noise and frequency dispersion. Thus, time and frequency synchronization tasks are very crucial for the proper signal recovery in the receiver. The difficulties and challenges are multiplied if we consider a multiuser OFDM system (OFDMA) where the subcarriers are shared between different users. The receiver has the task to choose optimal sampling instants and to align the subcarrier frequencies of an OFDM symbol that contains signals from multiple users. In this study the use of filter banks is considered in order to reduce Intercarrier interference in such a system and simplify the synchronization procedures that must take place. The proposed schemes are applicable to adjacent subcarrier permutation OFDMA systems where users are separated in bands of adjacent subcarriers. In order to achieve low processing load, techniques of multirate signal processing are adopted. The DFT - polyphase filters are the basic elements of the processing chain. Moreover the filtering procedure is preferred to be divided in multiple stages. The computational workload for each structure is determined and some measures for the reduction of the computational burden are presented.
带有子带载波分配的OFDMA系统的接收机结构
OFDM系统对相位噪声和频散非常敏感。因此,时间和频率同步任务对于接收机中适当的信号恢复至关重要。如果我们考虑在不同用户之间共享子载波的多用户OFDMA系统(OFDMA),那么困难和挑战就会成倍增加。接收机的任务是选择最优采样时刻,并对齐包含来自多个用户的信号的OFDM符号的子载波频率。在本研究中,考虑使用滤波器组来减少这种系统中的载波间干扰,并简化必须进行的同步过程。所提出的方案适用于相邻子载波排列OFDMA系统,其中用户在相邻子载波的频带中被分离。为了实现低处理负荷,采用了多速率信号处理技术。DFT -多相滤波器是处理链的基本元素。此外,过滤过程最好分为多个阶段。确定了每种结构的计算量,并提出了减少计算量的措施。
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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