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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Concurrent Error Detection in Reed–Solomon Encoders and Decoders
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Concurrent Error Detection in Reed–Solomon Encoders and Decoders

机译:Reed–Solomon编码器和解码器中的并发错误检测

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摘要

Reed–Solomon (RS) codes are widely used to identify and correct errors in transmission and storage systems. When RS codes are used for high reliable systems, the designer should also take into account the occurrence of faults in the encoder and decoder subsystems. In this paper, self-checking RS encoder and decoder architectures are presented. The RS encoder architecture exploits some properties of the arithmetic operations in ${rm GF}(2^m)$. These properties are related to the parity of the binary representation of the elements of the Galois Field. In the RS decoder, the implicit redundancy of the received codeword, under suitable assumptions explained in this paper, allows implementing concurrent error detection schemes useful for a wide range of different decoding algorithms with no intervention on the decoder architecture. Moreover, performances in terms of area and delay overhead for the proposed circuits are presented.
机译:里德-所罗门(RS)码被广泛用于识别和纠正传输和存储系统中的错误。当RS代码用于高可靠性系统时,设计人员还应考虑编码器和解码器子系统中故障的发生。本文提出了自检RS编码器和解码器的体系结构。 RS编码器体系结构利用$ {rm GF}(2 ^ m)$中的算术运算的某些属性。这些属性与Galois字段元素的二进制表示形式的奇偶性有关。在RS解码器中,在本文所述的适当假设下,接收到的码字的隐式冗余允许实现并发错误检测方案,该方案对于多种不同的解码算法均有用,而无需干预解码器体系结构。此外,提出了在面积和延迟开销方面所提出的电路的性能。

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