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  5. Design of Joint Position and Constellation Mapping Assisted DCSK Scheme Subject to Laplacian Impulsive Noise

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Article
English
2021

Design of Joint Position and Constellation Mapping Assisted DCSK Scheme Subject to Laplacian Impulsive Noise

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English
2021
IEEE Communications Letters
Vol 26 (2)
DOI: 10.1109/lcomm.2021.3128400

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Guanrong Chen
Guanrong Chen

City University Of Hong Kong

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Xiangming Cai
Weikai Xu
Lin Wang
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Abstract

In this letter, a joint position and constellation mapping (JPCM) assisted differential chaos shift keying (JPCM-DCSK) scheme is proposed to address the problem of unreliable data transmission in the power line communication (PLC) channel subjected to Laplacian impulsive noise. The constellation states and time slot position patterns are integrated cooperatively, which enables JPCM-DCSK to transmit more information bits. An effective JPCM detection algorithm is proposed to recover the information bits. Moreover, the bit error rate (BER) expression of JPCM-DCSK is derived over a multipath PLC channel, which is verified by computer simulations. Comparisons of BER performances demonstrate that JPCM-DCSK outperforms its competitors by 2 dB to 6 dB gains.

How to cite this publication

Xiangming Cai, Weikai Xu, Lin Wang, Guanrong Chen (2021). Design of Joint Position and Constellation Mapping Assisted DCSK Scheme Subject to Laplacian Impulsive Noise. IEEE Communications Letters, 26(2), pp. 463-467, DOI: 10.1109/lcomm.2021.3128400.

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Publication Details

Type

Article

Year

2021

Authors

4

Datasets

0

Total Files

0

Language

English

Journal

IEEE Communications Letters

DOI

10.1109/lcomm.2021.3128400

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