Determining the Generalized Hamming Weight Hierarchy of the Binary Projective Reed-Muller Code

Vinayak Ramkumar, Myna Vajha, P. V. Kumar
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引用次数: 3

Abstract

Projective Reed-Muller codes correspond to subcodes of the Reed-Muller code in which the polynomials being evaluated to yield codewords, are restricted to be homogeneous. The Generalized Hamming Weights (GHW) of a code C, identify for each dimension v, the smallest size of the support of a sub code of $C$ of dimension u, The GHW of a code are of interest in assessing the vulnerability of a code in a wiretap channel setting. It is also of use in bounding the state complexity of the trellis representation of the code. In prior work [1] by the same authors, a code-shortening algorithm was employed to derive upper bounds on the GHW of binary projective, Reed-Muller (PRM) codes. In the present paper, we derive a matching lower bound by adapting the proof techniques used originally for Reed-Muller (RM) codes by Wei in [2]. This results in a characterization of the GHW hierarchy of binary PRM codes.
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确定二进制投影Reed-Muller码的广义Hamming权层次
投影里德-穆勒码对应于里德-穆勒码的子码,其中多项式被评估以产生码字,被限制为齐次。代码C的广义汉明权重(GHW),确定了每个维v,支持维u的子代码$C$的最小尺寸,代码的GHW对评估代码在窃听信道设置中的脆弱性感兴趣。它还用于限定代码的网格表示的状态复杂性。在相同作者的先前工作[1]中,使用代码缩短算法来推导二进制投影Reed-Muller (PRM)码的GHW上界。本文采用Wei在[2]中最初用于Reed-Muller (RM)码的证明技术,导出了一个匹配下界。这导致了二进制PRM码的GHW层次结构的表征。
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