This letter presents a comprehensive analytical framework for average pairwise error probability (PEP) of decode-and-forward cooperative network based on various distributed space-time block codes (DSTBCs) with antenna switching (DDF-AS) technique over quasi-static Rayleigh fading channels. Utilizing the analytical framework, exact and asymptotic PEP expressions can be effectively formulated, which are based on the Lauricella multiplicative hypergeometric function, when various DSTBCs are adopted for the DDF-AS system. The derived asymptotic PEP formulas and some numerical results enable us to verify that the DDF-AS scheme outperforms the conventional cooperative schemes in terms of error rate performance. Furthermore, the asymptotic PEP formulas can also provide explicit and useful insights into the full diversity transmission achieved by the DDF-AS system.
Minhwan CHOI
Hanyang University
Hoojin LEE
Hansung University
Haewoon NAM
Hanyang University
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Minhwan CHOI, Hoojin LEE, Haewoon NAM, "Error Rate Analysis of DF Cooperative Network Based on Distributed STBCs Employing Antenna Switching Technique" in IEICE TRANSACTIONS on Fundamentals,
vol. E102-A, no. 5, pp. 741-746, May 2019, doi: 10.1587/transfun.E102.A.741.
Abstract: This letter presents a comprehensive analytical framework for average pairwise error probability (PEP) of decode-and-forward cooperative network based on various distributed space-time block codes (DSTBCs) with antenna switching (DDF-AS) technique over quasi-static Rayleigh fading channels. Utilizing the analytical framework, exact and asymptotic PEP expressions can be effectively formulated, which are based on the Lauricella multiplicative hypergeometric function, when various DSTBCs are adopted for the DDF-AS system. The derived asymptotic PEP formulas and some numerical results enable us to verify that the DDF-AS scheme outperforms the conventional cooperative schemes in terms of error rate performance. Furthermore, the asymptotic PEP formulas can also provide explicit and useful insights into the full diversity transmission achieved by the DDF-AS system.
URL: https://global.ieice.org/en_transactions/fundamentals/10.1587/transfun.E102.A.741/_p
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@ARTICLE{e102-a_5_741,
author={Minhwan CHOI, Hoojin LEE, Haewoon NAM, },
journal={IEICE TRANSACTIONS on Fundamentals},
title={Error Rate Analysis of DF Cooperative Network Based on Distributed STBCs Employing Antenna Switching Technique},
year={2019},
volume={E102-A},
number={5},
pages={741-746},
abstract={This letter presents a comprehensive analytical framework for average pairwise error probability (PEP) of decode-and-forward cooperative network based on various distributed space-time block codes (DSTBCs) with antenna switching (DDF-AS) technique over quasi-static Rayleigh fading channels. Utilizing the analytical framework, exact and asymptotic PEP expressions can be effectively formulated, which are based on the Lauricella multiplicative hypergeometric function, when various DSTBCs are adopted for the DDF-AS system. The derived asymptotic PEP formulas and some numerical results enable us to verify that the DDF-AS scheme outperforms the conventional cooperative schemes in terms of error rate performance. Furthermore, the asymptotic PEP formulas can also provide explicit and useful insights into the full diversity transmission achieved by the DDF-AS system.},
keywords={},
doi={10.1587/transfun.E102.A.741},
ISSN={1745-1337},
month={May},}
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TY - JOUR
TI - Error Rate Analysis of DF Cooperative Network Based on Distributed STBCs Employing Antenna Switching Technique
T2 - IEICE TRANSACTIONS on Fundamentals
SP - 741
EP - 746
AU - Minhwan CHOI
AU - Hoojin LEE
AU - Haewoon NAM
PY - 2019
DO - 10.1587/transfun.E102.A.741
JO - IEICE TRANSACTIONS on Fundamentals
SN - 1745-1337
VL - E102-A
IS - 5
JA - IEICE TRANSACTIONS on Fundamentals
Y1 - May 2019
AB - This letter presents a comprehensive analytical framework for average pairwise error probability (PEP) of decode-and-forward cooperative network based on various distributed space-time block codes (DSTBCs) with antenna switching (DDF-AS) technique over quasi-static Rayleigh fading channels. Utilizing the analytical framework, exact and asymptotic PEP expressions can be effectively formulated, which are based on the Lauricella multiplicative hypergeometric function, when various DSTBCs are adopted for the DDF-AS system. The derived asymptotic PEP formulas and some numerical results enable us to verify that the DDF-AS scheme outperforms the conventional cooperative schemes in terms of error rate performance. Furthermore, the asymptotic PEP formulas can also provide explicit and useful insights into the full diversity transmission achieved by the DDF-AS system.
ER -