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Dithered Quantization via Orthogonal Transformations

机译:通过正交变换进行抖动量化

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Dithered quantization is a technique used to reduce or eliminate the statistical dependence between the signal and quantization error. This is most often achieved via adding pseudo-random noise prior to quantization. The present work develops a different dithering method, where dithering is accomplished by applying an orthogonal transformation to a vector of samples prior to quantization, and applying its inverse to the output of the quantizer. Focusing on uniform scalar quantization, it is shown that for any quantization rate, the proposed architecture approaches second-order independence, i.e., asymptotically vanishing correlation, as the dimension of the vector of samples processed jointly grows.
机译:抖动量化是一种用于减少或消除信号与量化误差之间的统计依赖性的技术。这通常是通过在量化之前添加伪随机噪声来实现的。本工作开发了一种不同的抖动方法,其中抖动是通过在量化之前对样本矢量进行正交变换并将其逆值应用于量化器的输出来完成的。着眼于统一的标量量化,表明对于任何量化速率,随着共同处理的样本向量的维数的增长,所提出的体系结构都接近二阶独立性,即渐近消失的相关性。

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