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Robust Distributed Source Coder Design by Deterministic Annealing

机译:确定性退火的强大分布式源编码器设计

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This paper considers the design of efficient quantizers for a robust distributed source coding system. The information is encoded at independent terminals and transmitted across separate channels, any of which may fail. The scenario subsumes a wide range of source and source-channel coding/quantization problems, including multiple descriptions and distributed source coding. Greedy descent methods depend heavily on initialization, and the presence of abundant (high density of) “poor” local optima on the cost surface strongly motivates the use of a global design algorithm. We propose a deterministic annealing approach for the design of all components of a generic robust distributed source coding system. Our approach avoids many poor local optima, is independent of initialization, and does not make any simplifying assumption on the underlying source distribution. Simulation results demonstrate a wide spread in the performance of greedy Lloyd-based algorithms, and considerable gains are achieved by using the proposed deterministic annealing approach.
机译:本文考虑了健壮的分布式源编码系统的有效量化器的设计。信息在独立的终端上编码,并通过单独的信道传输,任何信道都可能失败。该方案包含大量的源和源通道编码/量化问题,包括多个描述和分布式源编码。贪婪的下降方法在很大程度上依赖于初始化,并且成本面上存在大量(“高密度”的)“较差”局部最优值,这极大地促进了全局设计算法的使用。我们为通用鲁棒分布式源编码系统的所有组件的设计提出了确定性退火方法。我们的方法避免了许多不良的局部最优,独立于初始化,并且没有对基础源分布进行任何简化的假设。仿真结果表明,贪婪的基于Lloyd的算法在性能上有广泛的应用,通过使用所提出的确定性退火方法,可以取得可观的收益。

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