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ROSE: Robustly Safe Charging for Wireless Power Transfer.

Authors :
Dai, Haipeng
Xu, Yun
Chen, Guihai
Dou, Wanchun
Tian, Chen
Wu, Xiaobing
He, Tian
Source :
IEEE Transactions on Mobile Computing; Jun2022, Vol. 21 Issue 6, p2180-2197, 18p
Publication Year :
2022

Abstract

One critical issue for wireless power transfer is to avoid human health impairments caused by electromagnetic radiation (EMR) exposure. The existing studies mainly focus on scheduling wireless chargers so that (expected) EMR at any point in the area does not exceed a threshold $R_t$ R t . Nevertheless, they overlook the EMR jitter that leads to exceeding of $R_t$ R t even if the expected EMR is no more than $R_t$ R t . This paper studies the fundamental problem of RObustly SafE charging for wireless power transfer (ROSE), that is, scheduling the power of chargers so that the charging utility for all rechargeable devices is maximized while the probability that EMR anywhere does not exceed $R_t$ R t is no less than a given confidence. We first build our empirical probabilistic charging model and EMR model. Then, we present EMR approximation and area discretization techniques to formulate ROSE into a Second-Order Cone Program. After that, we propose the first redundant second-order cone constraints reduction algorithm to reduce the computational cost, and therefore obtain a $(1-\epsilon)$ (1 - ε) -approximation centralized algorithm. Further, we propose a $(1-\epsilon)$ (1 - ε) -approximation fully distributed algorithm scalable with network size for ROSE. We conduct both simulation and field experiments, and the results show that our algorithms can outperform comparison algorithms by 480.19 percent. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15361233
Volume :
21
Issue :
6
Database :
Complementary Index
Journal :
IEEE Transactions on Mobile Computing
Publication Type :
Academic Journal
Accession number :
156742098
Full Text :
https://doi.org/10.1109/TMC.2020.3032591