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Decision directed iterative channel estimation and Reed–Solomon decoding over flat fading channels

机译:判决指导的迭代信道估计和平坦衰落信道上的里德-所罗门解码

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摘要

Iterative channel estimation and decoding over flat Rayleigh fading channels have been shown in literature to improve the performance of receivers in wireless communication systems. Turbo and low density parity check codes have mostly been used as the forward error correction (FEC) scheme in the iterative receiver structures. This study proposes a decision directed iterative channel estimation and decoding receiver using Reed–Solomon codes. In particular, the Koetter and Vardy, Reed–Solomon (KV–RS) soft decision decoder is adopted in the receiver structure as the FEC scheme. Two methods of deriving a priori information in joint iterative channel estimation and decoding receiver structures are also analysed in this study. The first method derives the a priori information employing the log likelihood ratio (LLR) method. A priori information derived using the LLR method is mostly used in iterative receiver structures in the literature. The second method derives the a priori information employing the distance metric (DM) method. The DM method is proposed in this study as an alternative approach to the LLR method of deriving a priori information in the iterative receivers. Hard and soft feedback information from the KV–RS decoder is considered to verify the performance of these methods. The performance of the two a priori information methods is documented through computer simulation assuming an -ary quadrature amplitude modulation system. Simulation results verify the improvement in symbol error rate (SER) performance in the KV–RS iterative receiver structure in comparison with the KV–RS receiver without feedback. Also, the proposed DM method exhibits the same SER performance in comparison with the LLR method which is mostly used in the literature. More importantly, the proposed DM method has the advantage of less computational delay and time complexity compared with the LLR method.
机译:文献已经显示了在平坦瑞利衰落信道上的迭代信道估计和解码,以提高无线通信系统中接收机的性能。在迭代接收机结构中,Turbo和低密度奇偶校验码主要用作前向纠错(FEC)方案。这项研究提出了一种使用里德-所罗门码的决策定向迭代信道估计和解码接收机。特别是,在接收器结构中采用了Koetter and Vardy,Reed-Solomon(KV-RS)软判决解码器作为FEC方案。在这项研究中,还分析了在联合迭代信道估计和解码接收机结构中获得先验信息的两种方法。第一种方法采用对数似然比(LLR)方法得出先验信息。使用LLR方法获得的先验信息主要用于文献中的迭代接收器结构中。第二种方法采用距离度量(DM)方法得出先验信息。 DM方法在本研究中被提议作为在迭代接收器中推导先验信息的LLR方法的替代方法。来自KV-RS解码器的硬和软反馈信息被认为可以验证这些方法的性能。假设先验正交调幅系统,则通过计算机仿真记录了两种先验信息方法的性能。与没有反馈的KV-RS接收器相比,仿真结果证明了KV-RS迭代接收器结构中符号错误率(SER)性能的提高。而且,与文献中最常用的LLR方法相比,提出的DM方法具有相同的SER性能。更重要的是,与LLR方法相比,所提出的DM方法具有更少的计算延迟和时间复杂度的优势。

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