4.6 Article

Performance Analysis of UAV Relay Assisted IoT Communication Network Enhanced With Energy Harvesting

Journal

IEEE ACCESS
Volume 7, Issue -, Pages 38738-38747

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/ACCESS.2019.2906088

Keywords

Unmanned aerial vehicles (UAV); relay assisted; IoT; energy harvesting; protocol design; aggregate interference

Funding

  1. National Thirteen Five Equipment Research Fund [6140311030207]
  2. National Key Research and Development Plan [2018YFB0904905]
  3. National Natural Science Foundation of China [61801170, 61501405, 61801435, U1404615, 61671144, 41605122, 61701172, U1504619]
  4. Project of Education Department Cooperation Cultivation [201602011005, 201702135098]
  5. China Postdoctoral Science Foundation [2018M633351]
  6. Program for Science and Technology Innovation Talents in the University of Henan Province [17HASTIT025]
  7. Xizang Autonomous Region Thirteen Five'' Plan 2018 Major Project [XZJKY201803]
  8. Center for Collaborative Innovation in the Heritage and Development of Xizang Culture Project 21 in 2018
  9. Natural Science Foundation of Xizang Autonomous Region The Secure Transmission Key Technology of Relay Enhanced Millimeter Wave MIMO

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This paper investigated the multiple unmanned aerial vehicle (UAV) relays' assisted network in the Internet of Things (IoT) systems enhanced with energy harvesting in order to overcome the large-scale fading between source and sink as well as achieve the green cooperative communications, where time switch (TS) and power splitting (PS) strategies were typically applied for UAV relays to implement energy harvesting transmission, which was also selected via signal to noise ratio (SNR) maximization criterion so that the terminal node can obtain the optimal signal. Meanwhile, it was worth noting that the terminal node may be disturbed by aggregated interference caused by dense network signaling interaction in the future 5G/B5G systems. Therefore, after TS and PS protocols designing and utilizing, the closed-form expressions of outage probability and bit error rate (BER) for UAV relay assisted IoT systems suffered from aggregated interference were derived in detail. In addition, the throughput and delay limited state of UAV relay assisted transmission were also analyzed thoroughly. The derivations and analysis results showed that the proposed multi-parameter joint optimization of transmitting power, scaling factor, and UAV relay selection could effectively improve the system throughput and reduce the system outage probability and BER. The simulation experiments verified the effectiveness of the proposed schemes and the correctness of theoretical analysis.

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