Channel shortening in OFDM system using differential space-frequency block encoding

T. Ben Jabeur, K. Abed-Meraim, M. Bonnet, H. Boujemaa
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引用次数: 1

Abstract

Alamouti code with differential encoding has been recently proposed for OFDM systems. It allows full-rate and full-diversity communication and can be decoded with a linear complexity when using two transmit and one receive antennas. However, these advantages assume no interbloc interference (IBI) and no intersymbol interference (ISI) which occur only if the Guard Interval (GI) size is larger than the channel length. In order to relax this condition and to increase the effective flow, we adopt firstly linear channel shortening techniques to reduce the length of the channel at the length of the GI. We show here that this technique is not efficient for a 2 × 1 system and we propose a new non linear method based on the knowledge of the first emitted symbol.
差分空频分组编码在OFDM系统中的信道缩短
差分编码的Alamouti码最近被提出用于OFDM系统。它允许全速率和全分集通信,当使用两个发射和一个接收天线时,可以以线性复杂性进行解码。然而,这些优点假设没有块间干扰(IBI)和符号间干扰(ISI),只有当保护间隔(GI)大小大于信道长度时才会发生这种情况。为了放松这一条件,增加有效流量,我们首先采用线性缩短通道技术,减少通道长度在GI的长度。我们在这里证明了这种技术对于2 × 1系统是不有效的,我们提出了一种新的基于第一发射符号知识的非线性方法。
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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