A comparison of scalar quantization strategies for noisy channel data transmission

M.Y. Cheung, Jacques Vaisey · IEEE Transactions on Communications · 1995

It is known that the combination of uniform quantization and entropy coding performs optimally at asymptotically high rates. However, due to synchronization problems resulting from the use of variable length codes, this is true only in the absence of transmission errors. Thus, the performance over noisy channels can be improved by using either fixed length codes and Lloyd-Max quantization or by adding end-of-line symbols. Computer simulations are used to compare the above two schemes for a variety of error rates, line lengths and amounts of error protection. It is found that the "uniform" scheme gives the best SNR for a given rate in the case of memoryless Gaussian and Laplacian sources, provided that its parameters are chosen sensibly. It is expected that these results will generalize to other sources.>

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