4.7 Article

Intelligent Reflecting Surface Assisted Wireless Powered Sensor Networks for Internet of Things

期刊

IEEE TRANSACTIONS ON COMMUNICATIONS
卷 69, 期 7, 页码 4877-4889

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCOMM.2021.3074539

关键词

Intelligent reflecting surface (IRS); wireless powered sensor network (WPSN); Internet of Things (IoT); phase shift

资金

  1. National Natural Science Foundation of China [62071223, 62031012, 61801434, 61801435, 61771431]
  2. China Postdoctoral Science Foundation [2020M682345]
  3. Henan Postdoctoral Foundation [202001015]
  4. Science and Technology Innovation Project of Zhengzhou [2019CXZX0037]
  5. National Key Research and Development Program of China [2019QY0302, 2019YFB1803200]
  6. Open Fund of the Shaanxi Key Laboratory of Information Communication Network and Security [ICNS201801]
  7. National Key Research and Development Project [2020YFB1807602]
  8. Young Elite Scientist Sponsorship Program by CAST
  9. Chongqing Jiaotong University [2020020070]
  10. 2021 Qualcomm Faculty Award

向作者/读者索取更多资源

This paper studies an intelligent reflecting surface (IRS) aided wireless powered sensor network and proposes a low complexity scheme to optimize phase shift and transmission time allocation for enhancing network performance. The proposed IRS assisted scheme achieves almost 100% higher sum throughput compared to the counterpart without IRS, as validated by numerical results.
This paper studies an intelligent reflecting surface (IRS) aided wireless powered sensor network (WPSN). Specifically, a power station (PS) provides wireless energy to multiple internet of thing (IoT) devices which supports them to deliver their own messages to an access point (AP). Moreover, we deploy an IRS to enhance the performance of the WPSN by intelligently adjusting the phase shift of each reflecting element. To evaluate the performance of the IRS assisted WPSN, we maximize its sum throughput to jointly optimize the phase shift matrices and the transmission time allocations. Due to the non-convexity of the formulated optimization problem, we first derive the optimal phase shifts of the wireless information transfer (WIT) in closed-form. Consequently, a semi-definite programming (SDP) relaxed approach is considered to jointly design the phase shift matrix of the wireless energy transfer (WET) and the transmission time allocations. In addition, we propose a low complexity scheme to gain insights and reduce the computational complexity incurred by the SDP relaxed scheme. Specifically, the optimal solutions of the phase shifts and the transmission time allocation are derived in closed-form by the Majorization-Minimization (MM) algorithm, the Lagrange dual method and the Karush-Kuhn-Tucker (KKT) conditions. Finally, numerical results are presented to validate the proposed schemes and confirm the beneficial role of the IRS in comparison to the benchmark schemes, where the proposed IRS assisted scheme achieves almost 100% higher sum throughput, in comparison to the counterpart without IRS.

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