Industrial Networks and Intelligent Systems. 3rd International Conference, INISCOM 2017, Ho Chi Minh City, Vietnam, September 4, 2017, Proceedings

Research Article

Exact Outage Probability of Two-Way Decode-and-Forward Scheme with Energy Harvesting from Intermediate Relaying Station

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  • @INPROCEEDINGS{10.1007/978-3-319-74176-5_15,
        author={Tan-Phuoc Huynh and Pham Son and Miroslav Voznak},
        title={Exact Outage Probability of Two-Way Decode-and-Forward Scheme with Energy Harvesting from Intermediate Relaying Station},
        proceedings={Industrial Networks and Intelligent Systems. 3rd International Conference, INISCOM 2017, Ho Chi Minh City, Vietnam, September 4, 2017, Proceedings},
        proceedings_a={INISCOM},
        year={2018},
        month={1},
        keywords={Energy harvesting Two-way scheme Cooperative communication Decode-and-forward Digital network coding Outage probability},
        doi={10.1007/978-3-319-74176-5_15}
    }
    
  • Tan-Phuoc Huynh
    Pham Son
    Miroslav Voznak
    Year: 2018
    Exact Outage Probability of Two-Way Decode-and-Forward Scheme with Energy Harvesting from Intermediate Relaying Station
    INISCOM
    Springer
    DOI: 10.1007/978-3-319-74176-5_15
Tan-Phuoc Huynh1,*, Pham Son2,*, Miroslav Voznak3,*
  • 1: Eastern International University (EIU)
  • 2: Ho Chi Minh City University of Technology and Education
  • 3: VSB Technical University of Ostrava
*Contact email: phuoc.huynh@eiu.edu.vn, sonpndtvt@hcmute.edu.vn, miroslav.voznak@vsb.cz

Abstract

In this paper, we propose a two-way energy-harvesting scheme (called a TWEH protocol) in which an intermediate full-power relay provides energy for two source nodes and implements digital network coding to compress received data from these source nodes. In the proposed TWEH protocol, two source nodes do not have enough energy to exchange data with each other, they have to collect energy from the intermediate relay through wireless signals before transmitting their data. We analyze and evaluate the system performance in terms of exact closed-form outage probabilities over Rayleigh fading channels. For comparison purposes, a conventional two-way scheme without using digital network coding and energy harvesting (called a TWNEH protocol) is also obtained. Results show that the proposed TWEH protocol outperforms the TWNEH protocol. In addition, the theoretical analyses are verified by performing Monte Carlo simulation.