TY - JOUR
T1 - Optimum Quantizer Performance for a Class of Non-Gaussian Memoryless Sources
AU - Farvardin, Nariman
AU - Modestino, James W.
PY - 1984/5
Y1 - 1984/5
N2 - The performance of optimum quantizers subject to an entropy constraint is studied for a wide class of memoryless sources. For a general distortion criterion, necessary conditions are developed for optimality and a recursive algorithm is described for obtaining the optimum quantizer. Under a mean-square error criterion, the performance of entropy encoded uniform quantization of memoryless Gaussian sources is well-known to be within 0.255 bits / sample of the rate-distortion bound at relatively high rates. Despite claims to the contrary, it is demonstrated that similar performance can be expected for a wide range of memoryless sources. Indeed, for the cases considered, the worst case performance is observed to be less than 0.3 bits / sample from the rate-distortion bound, and in most cases this disparity is less at low rates.
AB - The performance of optimum quantizers subject to an entropy constraint is studied for a wide class of memoryless sources. For a general distortion criterion, necessary conditions are developed for optimality and a recursive algorithm is described for obtaining the optimum quantizer. Under a mean-square error criterion, the performance of entropy encoded uniform quantization of memoryless Gaussian sources is well-known to be within 0.255 bits / sample of the rate-distortion bound at relatively high rates. Despite claims to the contrary, it is demonstrated that similar performance can be expected for a wide range of memoryless sources. Indeed, for the cases considered, the worst case performance is observed to be less than 0.3 bits / sample from the rate-distortion bound, and in most cases this disparity is less at low rates.
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U2 - 10.1109/TIT.1984.1056920
DO - 10.1109/TIT.1984.1056920
M3 - Article
AN - SCOPUS:0021422549
SN - 0018-9448
VL - 30
SP - 485
EP - 497
JO - IEEE Transactions on Information Theory
JF - IEEE Transactions on Information Theory
IS - 3
ER -