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首页> 外文期刊>IEEE Transactions on Information Theory >Deterministic Annealing for Entropy-Constrained Vector Quantizer Design
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Deterministic Annealing for Entropy-Constrained Vector Quantizer Design

机译:熵约束矢量量化器设计的确定性退火

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摘要

Typical vector quantizer (VQ) design algorithms, such as generalized Lloyd methods, are susceptible to local minima. In addition, for entropy-constrained VQ, it is not obvious what the "right" number of codevectors is for any given source and target rate. One method that has shown promising results for solving both problems is deterministic annealing, where randomness is added to the encoding process, the uncertainty of which is gradually reduced until a deterministic coder is found. This method has been used for fixed-rate and entropy-constrained unstructured VQ, as well as for a variety of structurally constrained VQs. For the unstructured entropy-constrained case, we generalize the existing methods to include new cost functions, and we argue that, depending on the chosen cost function, some splitting criteria are more suitable than others. We give analytical advantages and disadvantages to several cost functions and several splitting criteria, then give performance evaluations by testing on synthetic and natural sources.
机译:典型的矢量量化器(VQ)设计算法(例如广义Lloyd方法)容易受到局部最小值的影响。另外,对于受熵限制的VQ,对于任何给定的源速率和目标速率,“正确”数量的代码矢量并不明显。确定性退火是解决上述两个问题的有力方法之一,确定性退火是在编码过程中增加随机性,逐渐降低不确定性,直到找到确定性编码器为止。此方法已用于固定速率和熵约束的非结构化VQ,以及各种结构受约束的VQ。对于非结构化熵约束的情况,我们将现有方法推广到包括新的成本函数,并且我们认为,取决于所选的成本函数,某些拆分标准比其他标准更适合。我们对几种成本函数和几种拆分标准给出了分析的优缺点,然后通过对合成和天然资源进行测试来进行性能评估。

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