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Unifying notions of generalized weights for universal security on wire-tap networks

机译:窃听网络上通用权重的统一概念以实现通用安全性

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Universal security over a network with linear network coding has been intensively studied. However, previous linear codes used for this purpose were linear over a larger field than that used on the network. In this work, we introduce new parameters (relative dimension/rank support profile and relative generalized matrix weights) for linear codes that are linear over the field used in the network, measuring the universal security performance of these codes. The proposed new parameters enable us to use optimally universal secure linear codes on noiseless networks for all possible parameters, as opposed to previous works, and also enable us to add universal security to the recently proposed list-decodable rank-metric codes by Guruswami et al. We give several properties of the new parameters: monotonicity, Singleton-type lower and upper bounds, a duality theorem, and definitions and characterizations of equivalences of linear codes. Finally, we show that our parameters strictly extend relative dimension/length profile and relative generalized Hamming weights, respectively, and relative dimension/intersection profile and relative generalized rank weights, respectively. Moreover, we show that generalized matrix weights are larger than Delsarte generalized weights.
机译:已经深入研究了具有线性网络编码的网络上的通用安全性。但是,用于此目的的先前线性代码在比网络上使用的更大的字段上是线性的。在这项工作中,我们为线性代码引入了新的参数(相对尺寸/等级支持配置文件和相对广义矩阵权重),这些参数在网络中使用的字段上是线性的,从而测量了这些代码的通用安全性能。所提出的新参数使我们能够对所有可能的参数使用无噪声网络上的最佳通用安全线性代码,这与先前的工作相反,并且还使我们能够为Guruswami等人最近提出的列表可分解的秩度量代码增加通用安全性。 。我们给出了新参数的几个属性:单调性,单例类型的上下界,对偶定理以及线性码的等价性的定义和表征。最后,我们证明了我们的参数分别严格地扩展了相对尺寸/长度轮廓和相对广义汉明权重,以及相对尺寸/相交轮廓和相对广义秩权重。此外,我们表明广义矩阵权重大于Delsarte广义权重。

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