Non-uniform deployment of power beacons in wireless powered communication networks
journal contributionposted on 24.05.2019, 08:32 by Kai Liang, Liqiang Zhao, Gan ZhengGan Zheng, Hsiao-Hwa Chen
© 2002-2012 IEEE. In wireless powered communication networks (WPCNs), base station (BS) and power beacons (PBs) can offer supplement power for uplink transmission of user equipments (UEs). However, the aggregate power consumption of massively deployed PBs may exceed that of a BS. We propose a non-uniform deployment scheme for PBs in WPCNs, where a cell is divided into inner and outer areas, such that BS and PBs can cooperate to power UEs. To be more specific, a BS located in the center of a cell provides downlink power supply for the inner area UEs and uplink information decoding for all the UEs in the cell; while the PBs power UEs in the outer area. With multiple antennas, maximum ratio transmission and maximum ratio combining are adopted for downlink energy beamforming and uplink information reception. Considering a finite area of the network, we derive the distribution of the distance from a non-center-located UE to its nearest PB in the outer area. An optimization problem is formulated to minimize total average power consumption while satisfying BS average transmission power constraint and coverage probability threshold. Moreover, coverage probability is derived for performance evaluation. The numerical results show that the power consumption of the proposed scheme is reduced significantly compared to PB-only WPCNs.
This work was supported in part by China Postdoctoral Science Foundation (2017M613074), Fundamental Research Funds for the Central Universities (JB170102), National Natural Science Foundation of China (61771358), National Natural Science Foundation of Shaanxi Province (2018JM6052), the 111 Project (B08038), the UK EPSRC (EP/N007840/1), and the Leverhulme Trust Research Project Grant (RPG-2017-129).
- Mechanical, Electrical and Manufacturing Engineering