Title :
Performance analysis of ambient RF energy harvesting: A stochastic geometry approach
Author :
Flint, Ian ; Xiao Lu ; Privault, Nicolas ; Niyato, Dusit ; Ping Wang
Author_Institution :
Sch. of Phys. h Math. Sci., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
Ambient RF (Radio Frequency) energy harvesting techniques have recently been proposed as a potential solution to provide proactive energy replenishment for wireless devices. This paper aims to analyze the performance of a battery-free wireless sensor powered by ambient RF energy harvesting using a stochastic-geometry approach. Specifically, we consider a random network model in which ambient RF sources are distributed as a Ginibre α-determinantal point process which recovers the Poisson point process when α approaches zero. We characterize the expected RF energy harvesting rate. We also perform a worst-case study which derives the upper bounds of both power outage and transmission outage probabilities. Numerical results show that our upper bounds are accurate and that better performance is achieved when the distribution of ambient sources exhibits stronger repulsion.
Keywords :
energy harvesting; geometry; stochastic processes; wireless sensor networks; Poisson point process; ambient RF energy harvesting; ambient radio frequency energy harvesting techniques; battery-free wireless sensor; performance analysis; power outage probabilities; proactive energy replenishment; random network model; stochastic geometry approach; transmission outage probabilities; wireless devices; Energy harvesting; Numerical models; Power system faults; Power system restoration; Radio frequency; Transmitting antennas; Upper bound; Ginibre model; Poisson point process; RF energy harvesting; determinantal point process; sensor networks;
Conference_Titel :
Global Communications Conference (GLOBECOM), 2014 IEEE
Conference_Location :
Austin, TX
DOI :
10.1109/GLOCOM.2014.7037012