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Bounds on the performance of vector-quantizers under channel errors

机译:信道误差下矢量量化器性能的界限

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Vector quantization (VQ) is an effective and widely known method for low-bit-rate communication of speech and image signals. A common assumption in the design of VQ-based communication systems is that the compressed digital information is transmitted through a perfect channel. Under this assumption, quantization distortion is the only factor in output signal fidelity. Moreover, the assignment of channel symbols to the VQ reconstruction vectors is of no importance. However, under physical channels, errors may be present, causing degradation in overall system performance. In such a case, the effect of channel errors on the coding system performance depends on the index assignment of the reconstruction vectors. The index assignment problem is a special case of the Quadratic Assignment Problem (QAP) and is known to be NP-complete. For a VQ with N reconstruction vectors there are N! possible assignments, meaning that an exhaustive search over all possible assignments is practically impossible. To help the VQ designer, we present in this correspondence lower and upper bounds on the performance of VQ systems under channel errors, over all possible assignments. The bounds coincide with a general bound for the QAP. Nevertheless, the proposed derivation allows us to compare the bounds with published results on VQ index assignment. A related expression for the average performance is also given and discussed. Special cases and numerical examples are given in which the bounds and average performance are compared with index assignments obtained by known algorithms.
机译:矢量量化(VQ)是一种有效的众所周知的语音和图像信号低比特率通信方法。在基于VQ的通信系统的设计中,一个普遍的假设是,压缩的数字信息是通过完美的信道传输的。在这种假设下,量化失真是输出信号保真度的唯一因素。此外,将信道符号分配给VQ重建向量并不重要。但是,在物理通道下,可能会出现错误,从而导致整体系统性能下降。在这种情况下,信道错误对编码系统性能的影响取决于重建矢量的索引分配。索引分配问题是二次分配问题(QAP)的特例,并且已知是NP完全的。对于具有N个重构向量的VQ,有N!可能的分配,这意味着几乎不可能对所有可能的分配进行详尽的搜索。为了帮助VQ设计人员,在此对应关系中,我们针对所有可能的分配,给出了通道错误下VQ系统性能的上下限。界限与QAP的一般界限一致。但是,建议的推导使我们可以将边界与已发布的VQ索引分配结果进行比较。还给出并讨论了平均性能的相关表达式。给出了特殊情况和数值示例,其中将界限和平均性能与通过已知算法获得的索引分配进行了比较。

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