Title :
Single Active Switch Power Electronics for Kilowatt Scale Capacitive Power Transfer
Author :
Jiejian Dai ; Ludois, Daniel C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Wisconsin-Madison, Madison, WI, USA
Abstract :
The development of capacitive power transfer (CPT) as a competitive wireless/contactless power transfer solution over short distances is proving viable in both consumer and industrial electronic products/systems. The CPT is usually applied in low-power applications, due to small coupling capacitance. Recent research has increased the coupling capacitance from the pF to the nF scale, enabling extension of CPT to kilowatt power level applications. This paper addresses the need of efficient power electronics suitable for CPT at higher power levels, while remaining cost effective. Therefore, to reduce the cost and losses single-switch-single-diode topologies are investigated. Four single active switch CPT topologies based on the canonical Ćuk, SEPIC, Zeta, and Buck-boost converters are proposed and investigated. Performance tradeoffs within the context of a CPT system are presented and corroborated with experimental results. A prototype single active switch converter demonstrates 1-kW power transfer at a frequency of 200 kHz with >90% efficiency.
Keywords :
inductive power transmission; power convertors; semiconductor diodes; semiconductor switches; Cuk converters; SEPIC converters; Zeta converters; buck-boost converters; contactless power transfer; cost reduction; coupling capacitance; efficient power electronics; frequency 200 kHz; kilowatt scale capacitive power transfer; loss reduction; power 1 kW; single active switch power electronics; single diode topologies; single switch topologies; wireless power transfer; Capacitors; Couplings; Inductors; Power electronics; Switches; Switching circuits; Topology; ??uk; Capacitive power transfer (CPT); SEPIC; noncontact; single switch converter; wireless power transfer;
Journal_Title :
Emerging and Selected Topics in Power Electronics, IEEE Journal of
DOI :
10.1109/JESTPE.2014.2334621