A blind equalizer which uses the differential constant modulus algorithm (DCMA) is introduced. An anchored FIR equalizer applied to a first-order autoregressive channel and updated according to the DCMA is shown to converge to the inverse of that channel regardless of the initial tap-weights and the gain along the direct path.
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Teruyuki MIYAJIMA, "Differential Constant Modulus Algorithm for Anchored Blind Equalization of AR Channels" in IEICE TRANSACTIONS on Fundamentals,
vol. E85-A, no. 12, pp. 2939-2942, December 2002, doi: .
Abstract: A blind equalizer which uses the differential constant modulus algorithm (DCMA) is introduced. An anchored FIR equalizer applied to a first-order autoregressive channel and updated according to the DCMA is shown to converge to the inverse of that channel regardless of the initial tap-weights and the gain along the direct path.
URL: https://global.ieice.org/en_transactions/fundamentals/10.1587/e85-a_12_2939/_p
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@ARTICLE{e85-a_12_2939,
author={Teruyuki MIYAJIMA, },
journal={IEICE TRANSACTIONS on Fundamentals},
title={Differential Constant Modulus Algorithm for Anchored Blind Equalization of AR Channels},
year={2002},
volume={E85-A},
number={12},
pages={2939-2942},
abstract={A blind equalizer which uses the differential constant modulus algorithm (DCMA) is introduced. An anchored FIR equalizer applied to a first-order autoregressive channel and updated according to the DCMA is shown to converge to the inverse of that channel regardless of the initial tap-weights and the gain along the direct path.},
keywords={},
doi={},
ISSN={},
month={December},}
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TY - JOUR
TI - Differential Constant Modulus Algorithm for Anchored Blind Equalization of AR Channels
T2 - IEICE TRANSACTIONS on Fundamentals
SP - 2939
EP - 2942
AU - Teruyuki MIYAJIMA
PY - 2002
DO -
JO - IEICE TRANSACTIONS on Fundamentals
SN -
VL - E85-A
IS - 12
JA - IEICE TRANSACTIONS on Fundamentals
Y1 - December 2002
AB - A blind equalizer which uses the differential constant modulus algorithm (DCMA) is introduced. An anchored FIR equalizer applied to a first-order autoregressive channel and updated according to the DCMA is shown to converge to the inverse of that channel regardless of the initial tap-weights and the gain along the direct path.
ER -