Smart wireless power transfer—opportunities and challenges

W Liu, KT Chau, X Tian, H Wang, Z Hua - Renewable and Sustainable …, 2023 - Elsevier
Popularization of wireless power transfer (WPT) has promoted the multi-disciplinary
explorations and integration. It gradually incubates numerous attractive solutions for …

Review of near-field wireless power and communication for biomedical applications

HJ Kim, H Hirayama, S Kim, KJ Han, R Zhang… - IEEE …, 2017 - ieeexplore.ieee.org
Near-field magnetic wireless systems have distinct advantages over their conventional
farfield counterparts in water-rich environments, such as underwater, underground, and in …

Understanding wireless charger networks: Concepts, current research, and future directions

M Ren, H Dai, T Liu, X Deng, W Dou… - … Surveys & Tutorials, 2024 - ieeexplore.ieee.org
Wireless Charger Network (WCN) emerges as a promising networking paradigm, employing
wireless chargers with Wireless Power Transfer (WPT) technology to provide long-term and …

Far-field RF wireless power transfer with blind adaptive beamforming for Internet of Things devices

PS Yedavalli, T Riihonen, X Wang, JM Rabaey - IEEE Access, 2017 - ieeexplore.ieee.org
Wireless power transfer (WPT) has long been one of the main goals of Nikola Tesla, the
forefather of electromagnetic applications. In this paper, we investigate radio-frequency …

[PDF][PDF] Near Field WPT Charging a Smart Device Based on IoT Applications.

AM Jawad, NH Qasim, HM Jawad, MJ Abu-Alshaeer… - TTSIIT, 2022 - ceur-ws.org
Near-field wireless power transfers (WPTs) have seen major developments in recent years
due to the increasing popularity and availability of smart devices for the Internet of Things …

Maximum power tracking for magnetic field editing-based omnidirectional wireless power transfer

X Tian, KT Chau, W Liu, H Pang… - IEEE Transactions on …, 2022 - ieeexplore.ieee.org
This article proposes and implements an optimized omnidirectional wireless power transfer
(WPT) system using distributed transmitter coils. Under the consideration of practical WPT …

Pushing the range limits of commercial passive {RFIDs}

J Wang, J Zhang, R Saha, H **, S Kumar - 16th USENIX Symposium on …, 2019 - usenix.org
This paper asks:“Can we push the prevailing range limits of commercial passive RFIDs?”.
Today's commercial passive RFIDs report ranges of 5-15 meters at best. This constrains …

Megahertz multiple-receiver wireless power transfer systems with power flow management and maximum efficiency point tracking

M Fu, H Yin, C Ma - IEEE Transactions on Microwave Theory …, 2017 - ieeexplore.ieee.org
This paper presents systematic analysis and design of a megahertz multiple-receiver (RX)
wireless power transfer (WPT) system driven by a Class E power amplifier. Both circuit-level …

Peer-to-peer energy sharing in mobile networks: Applications, challenges, and open problems

A Dhungana, E Bulut - Ad Hoc Networks, 2020 - Elsevier
Energy is a scarce resource in mobile wireless networks that consist of devices mainly
powered by their batteries. Providing energy ubiquitously to these devices for making them …

Spatial filtering magnetic metasurface for misalignment robustness enhancement in wireless power transfer applications

V Lazzoni, D Brizi, A Monorchio - Scientific Reports, 2023 - nature.com
In this paper, we present the design of spatial filtering magnetic metasurfaces to overcome
the efficiency decay arising in misaligned resonant inductive Wireless Power Transfer …