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Author: Monika Pinchas

Affiliation: Ariel University Center, Israel

Keyword(s): Symbol Error Rate (SER), Blind Adaptive Equalizers, Intersymbol interference (ISI).

Related Ontology Subjects/Areas/Topics: Adaptive Systems ; Detection and Estimation ; Digital Signal Processing ; Signal Processing in Communications ; Telecommunications

Abstract: A non-zero residual intersymbol interference ( ISI) causes the symbol error rate (SER) to increase where the achievable SER may not answer any more on the system’s requirements. Thus, having a closed-form expression for the SER that takes into account the achievable performance of the chosen blind adaptive equalizer from the residual ISI point of view is important. In this paper, we propose a new expression for the SER valid for the two independent quadrature carrier case that depends on the step-size parameter, equalizer’s tap length, input signal statistics, channel power and signal to noise ratio (SNR).

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Paper citation in several formats:
Pinchas, M. (2013). Symbol Error Rate as a Function of the Residual ISI Obtained by Blind Adaptive Equalizers. In Proceedings of the 3rd International Conference on Pervasive Embedded Computing and Communication Systems - PECCS; ISBN 978-989-8565-43-3; ISSN 2184-2817, SciTePress, pages 156-160. DOI: 10.5220/0004236601560160

@conference{peccs13,
author={Monika Pinchas.},
title={Symbol Error Rate as a Function of the Residual ISI Obtained by Blind Adaptive Equalizers},
booktitle={Proceedings of the 3rd International Conference on Pervasive Embedded Computing and Communication Systems - PECCS},
year={2013},
pages={156-160},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0004236601560160},
isbn={978-989-8565-43-3},
issn={2184-2817},
}

TY - CONF

JO - Proceedings of the 3rd International Conference on Pervasive Embedded Computing and Communication Systems - PECCS
TI - Symbol Error Rate as a Function of the Residual ISI Obtained by Blind Adaptive Equalizers
SN - 978-989-8565-43-3
IS - 2184-2817
AU - Pinchas, M.
PY - 2013
SP - 156
EP - 160
DO - 10.5220/0004236601560160
PB - SciTePress