Parameters setting based on bit error probability formula for an amplitude modulated, baseband, communication system affected by timing jitter and frequency selective channel

A high data rate wired communication serializer/deserializer system (SerDes) bit error rate performance is subject to two main perturbations, additive thermal noise and timing jitter. Considering only M order Pulse Amplitude Modulation (M-PAM), the modulation order selection results from a trade-off...

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Published in:International journal of electronics and communications Vol. 178; p. 155288
Main Authors: Miqueu, Paul, Belvèze, Fabrice, Brossier, Jean-Marc, Ros, Laurent
Format: Journal Article
Language:English
Published: Elsevier GmbH 01-05-2024
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Abstract A high data rate wired communication serializer/deserializer system (SerDes) bit error rate performance is subject to two main perturbations, additive thermal noise and timing jitter. Considering only M order Pulse Amplitude Modulation (M-PAM), the modulation order selection results from a trade-off between additive thermal noise and timing jitter. To determine the best modulation order, an analytical expression of the Bit Error Probability (BEP) is derived considering both disturbances. This expression assumes no waveform distortion at sampling, an uncorrelated Gaussian timing jitter and a bandlimited Additive White Gaussian Noise (AWGN). Hence, it stands as a benchmark for SerDes performance. Its accuracy is discussed by comparing it to Binary Error Rate (BER) obtained via simulation for various channels. This analysis is extended to a more advanced scenario with a channel taken from the IEEE 802.3df working group for which the strong distortion introduced by the channel is reduced by using different kinds of equalizers.
AbstractList A high data rate wired communication serializer/deserializer system (SerDes) bit error rate performance is subject to two main perturbations, additive thermal noise and timing jitter. Considering only M order Pulse Amplitude Modulation (M-PAM), the modulation order selection results from a trade-off between additive thermal noise and timing jitter. To determine the best modulation order, an analytical expression of the Bit Error Probability (BEP) is derived considering both disturbances. This expression assumes no waveform distortion at sampling, an uncorrelated Gaussian timing jitter and a bandlimited Additive White Gaussian Noise (AWGN). Hence, it stands as a benchmark for SerDes performance. Its accuracy is discussed by comparing it to Binary Error Rate (BER) obtained via simulation for various channels. This analysis is extended to a more advanced scenario with a channel taken from the IEEE 802.3df working group for which the strong distortion introduced by the channel is reduced by using different kinds of equalizers.
ArticleNumber 155288
Author Belvèze, Fabrice
Ros, Laurent
Brossier, Jean-Marc
Miqueu, Paul
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  organization: Univ. Grenoble Alpes, CNRS, Grenoble INP, GIPSA-Lab, 38000 Grenoble, France. Institute of Engineering Univ. Grenoble Alpes
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Cites_doi 10.1109/JSSC.2021.3109167
10.1109/TIT.1971.1054627
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Keywords Pulse amplitude modulation
Timing Jitter
Binary Error Probability
High data rate SerDes
Language English
License This is an open access article under the CC BY-NC license.
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Snippet A high data rate wired communication serializer/deserializer system (SerDes) bit error rate performance is subject to two main perturbations, additive thermal...
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elsevier
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StartPage 155288
SubjectTerms Binary Error Probability
High data rate SerDes
Pulse amplitude modulation
Timing Jitter
Title Parameters setting based on bit error probability formula for an amplitude modulated, baseband, communication system affected by timing jitter and frequency selective channel
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