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Further Exploration of Convolutional Encoders for Unequal Error Protection and New UEP Convolutional Codes

机译:用于不均等错误保护的卷积编码器和新的UEP卷积码的进一步探索

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In this paper, the unequal error protection (UEP) capability of convolutional encoders, in terms of the separation vector, is studied from an algebraic viewpoint. A simple procedure is presented for constructing a generator matrix, which is basic and has the largest separation vector for every convolutional code. Such a generator matrix would be desirable, since the corresponding encoder not only achieves UEP optimality, but also avoids undesired catastrophic error propagation. In addition, canonical generator matrices, which are both basic and reduced, are even more preferable for encoding, since they attain the lowest complexity for Viterbi decoding. However, the direct transformation from a UEP-optimal generator matrix to a canonical generator matrix may come with an unexpected loss of the separation vector. We also propose a specific type of transformation matrix that reduces the external degrees of the generator matrices, from which canonical generator matrices can be constructed that include the mitigated degradation of the separation vector. Finally, beneficial UEP convolutional codes that achieve the maximum free distances for the given code parameters are provided.
机译:本文从代数的角度研究了卷积编码器的不等差错保护(UEP)能力,即分离向量。提出了一种构造生成器矩阵的简单过程,该矩阵是基本的,并且对于每个卷积码都具有最大的分离向量。这样的生成器矩阵将是期望的,因为相应的编码器不仅实现了UEP最优性,而且还避免了不希望的灾难性错误传播。此外,基本生成器矩阵和基本生成器矩阵都被简化,因为它们对于维特比解码具有最低的复杂性,因此甚至更适合于编码。但是,从UEP最佳生成器矩阵到规范生成器矩阵的直接转换可能会带来分离向量的意外损失。我们还提出了一种特定类型的变换矩阵,该变换矩阵可减小生成器矩阵的外部度,从中可以构造出规范的生成器矩阵,其中包括减轻分离向量的退化。最后,提供了有益的UEP卷积码,该卷积码可实现给定代码参数的最大自由距离。

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