2009•Unpublished venueRequires access

Network generalized hamming weight

Chi-Kin Ngai, Raymond W. Yeung, Zhixue Zhang

Open publisher page 19 citations

Abstract

In this paper, we extend the notion of generalized Hamming weight for classical linear block code to linear network codes by introducing the network generalized Hamming weight (NGHW) of a linear block code with respect to a given linear network code. The basic properties of NGHW are studied. We further show that NGHW can be used as a tool to characterize the security performance of a linear network code on a wiretap network. We also introduce the idea of network maximum distance separation code (NMDS code) by extending the notion of maximum distance separation code in classical algebraic coding theory. We prove that NMDS codes play an important role in minimizing the information that an eavesdropper can obtain from the network.

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What this paper is about

In this paper, we extend the notion of generalized Hamming weight for classical linear block code to linear network codes by introducing the network generalized Hamming weight (NGHW) of a linear block code with respect to a given linear network code. The basic properties of NGHW are studied. We further show that NGHW can be used as a tool to characterize the security performance of a linear network code on a wiretap network. We also introduce the idea of network maximum distance separation code (NMDS code) by extending the notion of maximum distance separation code in classical algebraic coding theory. We prove that NMDS codes play an important role in minimizing the information that an eavesdropper can obtain from the network.

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OpenAlex reports 19 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper, we extend the notion of generalized Hamming weight for classical linear block code to linear network codes by introducing the network generalized Hamming weight (NGHW) of a linear block code with respect to a given linear network code. The basic properties of NGHW are studied. We further show that NGHW can be used as a tool to characterize the security performance of a linear network code on a wiretap network. We also introduce the idea of network maximum distance separation code (NMDS code) by extending the notion of maximum distance separation code in classical algebraic coding theory. We prove that NMDS codes play an important role in minimizing the information that an eavesdropper can obtain from the network.

Key concepts: Linear code, Hamming code, Linear network coding, Constant-weight code, Cyclic code, Dual code, Hamming weight, Hamming distance

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