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https://doi.org/10.17559/TV-20160105041434

General Analysis of Resonance Coupled Wireless Power Transfer (WPT) Using Inductive Coils

Chandrasekharan Nataraj orcid id orcid.org/0000-0001-9061-7415 ; Asia Pacific University of Technology and Innovation, Lot 6, Technology Park Malaysia, Bukit Jalil, 57000 Kuala Lumpur, Malaysia
Sheroz Khan ; International Islamic University Malaysia (IIUM), Jalan Gombak, 53100 Kuala Lumpur, Selangor, Malaysia
Mohammed Hadi Habaebi orcid id orcid.org/0000-0002-2263-0850 ; International Islamic University Malaysia (IIUM), Jalan Gombak, 53100 Kuala Lumpur, Selangor, Malaysia
Asan G. A. Muthalif ; International Islamic University Malaysia (IIUM), Jalan Gombak, 53100 Kuala Lumpur, Selangor, Malaysia


Puni tekst: engleski pdf 1.198 Kb

str. 720-726

preuzimanja: 2.366

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Sažetak

In this paper, parameter analysis of the inductive coils is evaluated for low power Wireless Power Transfer (WPT) applications. Inductive coils are the major element used in the WPT systems, in which different shaped coils are employed. The selection of coils is very critical, depends purely on the fundamental characteristics (shape and geometry) of the coils. In order to design a better system, three different shapes of coils, namely, circular, square and rectangular are designed and analysed. The vital parameters such as self-inductance, mutual inductance, quality factor, magnetic field and efficiency are evaluated for all three coils. It is observed that these parameters are maximal for circular as compared to the other two shapes. The circular coils produce higher voltage efficiency of 29% as compared to rectangular (25%) and square (23%) shaped coils. Thus, this paves a way to other researchers to suitably select circular inductive coils for wireless electricity applications.

Ključne riječi

geometry and shape of coils; quality factor; resonant inductive coupling; self and mutual inductance; wireless power transfer

Hrčak ID:

202595

URI

https://hrcak.srce.hr/202595

Datum izdavanja:

28.6.2018.

Posjeta: 3.278 *