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Asymptotic bounds on optimal noisy channel quantization via random coding

机译:通过随机编码的最佳噪声信道量化的渐近边界

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Asymptotically optimal zero-delay vector quantization in the presence of channel noise is studied using random coding techniques. First, an upper bound is derived for the average rth-power distortion of channel optimized k-dimensional vector quantization at transmission rate R on a binary symmetric channel with bit error probability /spl epsiv/. The upper bound asymptotically equals 2/sup -rRg(/spl epsiv/,k,r/). where k/(k +r) [1 - log/sub 2/(l +2/spl radic/(/spl epsiv/(1-/spl epsiv/))] /spl les/g(/spl epsiv/,k,r)/spl les/1) for all /spl epsiv//spl ges/0, lim/sub /spl epsiv//spl rarr/0/g(/spl epsiv/,k,r)=1, and lim/sub k/spl rarr//spl infin//g(/spl epsiv/,k,r)=1. Numerical computations of g(/spl epsiv/,k,r) are also given. This result is analogous to Zador's (1982) asymptotic distortion rate of 2/sup -rR/ for quantization on noiseless channels. Next, using a random coding argument on nonredundant index assignments, a useful upper bound is derived in terms of point density functions, on the minimum mean squared error of high resolution, regular, vector quantizers in the presence of channel noise. The formula provides an accurate approximation to the distortion of a noisy channel quantizer whose codebook is arbitrarily ordered. Finally, it is shown that the minimum mean squared distortion of a regular, noisy channel VQ with a randomized nonredundant index assignment, is, in probability, asymptotically bounded away from zero.
机译:使用随机编码技术研究了存在信道噪声时的渐进最优零延迟矢量量化。首先,针对具有比特错误概率/ spl epsiv /的二进制对称信道上的传输速率R,得出信道优化的k维矢量量化的平均r次方功率失真的上限。上限渐近等于2 / sup -rRg(/ spl epsiv /,k,r /)。其中k /(k + r)[1- log / sub 2 /(l + 2 / spl radic /(/ spl epsiv /(1- / spl epsiv /))] / spl les / g(/ spl epsiv /,所有/ spl epsiv // spl ges / 0,lim / sub / spl epsiv // spl rarr / 0 / g(/ spl epsiv /,k,r)= 1的k,r)/ spl les / 1)和lim / sub k / spl rarr // spl infin // g(/ spl epsiv /,k,r)= 1。还给出了g(/ spl epsiv /,k,r)的数值计算。此结果类似于Zador(1982)的渐近失真率2 / sup -rR /,用于在无噪声通道上进行量化。接下来,使用关于非冗余索引分配的随机编码参数,在存在信道噪声的情况下,根据高分辨率,常规矢量量化器的最小均方误差,根据点密度函数得出有用的上限。该公式提供了一个噪声信道量化器的失真的精确近似值,该噪声信道量化器的码本是任意排序的。最终,表明具有随机非冗余索引分配的规则,有噪声信道VQ的最小均方失真有可能渐近地远离零。

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