2018
DOI: 10.3390/app8122341
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Wireless Power Transfer System Based on Strapping Resonators

Abstract: In this study, a kind of strapped resonator is proposed to deal with high power wireless power transfer (WPT) in microwave regimes. In many specific applications, such as high power microwave wireless power transfer system (WPT), a coil resonator is not suitable due to the frequency limitations. The high cost of the high-permittivity dielectric resonators also limits their application. As a high Q resonator, the strapped resonator is often used in the anode structure of a magnetron. The field distribution of π… Show more

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Cited by 2 publications
(3 citation statements)
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“…Several other follow-up studies were also published by the same authors in 2016 [39,48,49], 2017 [45,47,50], and 2019 [10]. Figure 14 illustrates the WPT system proposed by the authors [48][49][50].…”
Section: Inferences From Literature Review Studiesmentioning
confidence: 95%
See 1 more Smart Citation
“…Several other follow-up studies were also published by the same authors in 2016 [39,48,49], 2017 [45,47,50], and 2019 [10]. Figure 14 illustrates the WPT system proposed by the authors [48][49][50].…”
Section: Inferences From Literature Review Studiesmentioning
confidence: 95%
“…In a follow-up study, the same authors improved the WPT system as proposed in [46,47] using a dielectric cylinder resonator with colossal permittivity. e dielectric resonator was made from ceramics with a high permittivity of around 1000.…”
Section: Inferences From Literature Review Studiesmentioning
confidence: 99%
“…The WPT technology has a number of attractive features to offer, including ease of installation, a reduction in the cost of routine maintenance and ultimately achieving the primary goal of transmitting power over long distances [3] [4]. However, the performance of the WPT is limited by its inability to transmit power over a distance greater than one metre with high efficiency.…”
Section: Introductionmentioning
confidence: 99%