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A Low Power Error Detection in the Syndrome Calculator Block for Reed-Solomon Codes: RS(204,188)

机译:里德-所罗门码的Syndrome计算器块中的低功耗错误检测:RS(204,188)

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Reed-Solomon (RS) codes have been widely adopted in many modern communication systems. This paper describes a new method for error detection in the syndrome calculator block of RS decoders. The main feature of this method is to prove that it is possible to compute only a few syndrome coeffi-cients - less than half-to detect whether the codeword is correct. The theoretical estimate of the prob-ability that the new algorithm failed is shown to depend on the number of syndrome coefficients computed. The algorithm is tested using the RS(204,188) code with the first four coefficients. With a bit error rate of 1×10-4, this method reduces the power consumption by 6% compared to the basic RS(204,188) decoder. The error detection algorithm for the syndrome calculator block does not require modification of the basic hardware implementation of the syndrome coefficients computation. The algorithm significantly reduces the computation complexity of the syndrome calculator block, thus lowering the power needed.
机译:里德-所罗门(RS)码已被许多现代通信系统广泛采用。本文介绍了一种在RS解码器的校正子计算器模块中进行错误检测的新方法。该方法的主要特征是证明仅计算少数校正子系数(少于一半)来检测码字是否正确是可能的。新算法失败的概率的理论估计值显示为取决于计算出的校正子系数的数量。使用具有前四个系数的RS(204,188)码对算法进行测试。与基本的RS(204,188)解码器相比,此方法的误码率为1×10-4,可将功耗降低6%。校正子计算器模块的错误检测算法不需要修改校正子系数计算的基本硬件实现。该算法显着降低了校正子计算器模块的计算复杂度,从而降低了所需的功耗。

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