Optimization Deployed Strategy of Wireless Power Beacon Based on 5G Millimeter Wave Cooperative Communication Small Cell
In order to achieve the purpose of green communication with high spectral efficiency and low energy consumption in the fifth-generation mobile communication(5G)wireless network,the optimal deployment strategy of wireless Power Beacon(PB)based on mmWave cooperative communication small cell is studied experimentally.This strategy constructs a small cell network model of energy-constrained User Equipment Devices(UE)millimeter-wave cooperative communication in high and low frequency hybrid networks.By de-signing a new chain-building protocol with a"demand-selection-chain-building"mode,the communication millimeter-wave directional transmission technology is applied to the chain-building process.On the basis of this model,in order to improve the spectrum efficiency and energy collection coverage of the edge system,the normal operation of the system is ensured on the basis of minimizing the energy consumption of the system by minimizing the number of fixed charging energy beacons.The optimization problem is a Non-deterministic Polynomial Hard(NP-hard)problem with polynomial complexity of mixed integer programming.A greedy algorithm with constant factor is designed to solve the optimization problem approximately.Theoretical anal-ysis proves the feasibility of the algorithm.The simulation results show that the proposed strategy can effec-tively optimize the PBs deployment,and the energy consumption is the lowest under the same coverage and regional spectrum efficiency gain.
Simultaneous Wireless Information and Power Transfer(SWIPT)mobile edge computingcom-munication between devicestask uninstallationpower splitting