Proceedings of the 2017 International Conference on Electronic Industry and Automation (EIA 2017)

A Novel Timing Synchronization Algorithm based on Signal Reconstruction in Multipath Fading Channel

Authors
Juan CHEN, Xueqiang ZHENG
Corresponding Author
Juan CHEN
Available Online July 2017.
DOI
10.2991/eia-17.2017.33How to use a DOI?
Keywords
synchronization; signal reconstructing; multipath delay; HF channel
Abstract

Timing synchronization method for DS-SS system taking into account the multipath effect on HF channel is studied. A novel timing synchronization algorithm based on signal reconstruction is proposed in multipath fading HF channel. Through signal reconstructing and interference cancelling, the right path position and multipath delay can be evaluated. The simulation results show that the detection performance can be improved, and this new timing algorithm can easily separate different paths which cannot be done by traditional RAKE receiver.

Copyright
© 2017, the Authors. Published by Atlantis Press.
Open Access
This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).

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Volume Title
Proceedings of the 2017 International Conference on Electronic Industry and Automation (EIA 2017)
Series
Advances in Intelligent Systems Research
Publication Date
July 2017
ISBN
10.2991/eia-17.2017.33
ISSN
1951-6851
DOI
10.2991/eia-17.2017.33How to use a DOI?
Copyright
© 2017, the Authors. Published by Atlantis Press.
Open Access
This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).

Cite this article

TY  - CONF
AU  - Juan CHEN
AU  - Xueqiang ZHENG
PY  - 2017/07
DA  - 2017/07
TI  - A Novel Timing Synchronization Algorithm based on Signal Reconstruction in Multipath Fading Channel
BT  - Proceedings of the 2017 International Conference on Electronic Industry and Automation (EIA 2017)
PB  - Atlantis Press
SP  - 155
EP  - 160
SN  - 1951-6851
UR  - https://doi.org/10.2991/eia-17.2017.33
DO  - 10.2991/eia-17.2017.33
ID  - CHEN2017/07
ER  -