DocumentCode :
834905
Title :
DC analysis technique for inductive power transfer pick-ups
Author :
Boys, John T. ; Covic, Grant A. ; Xu, Yongxiang
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Auckland, New Zealand
Volume :
1
Issue :
2
fYear :
2003
fDate :
6/1/2003 12:00:00 AM
Firstpage :
51
Lastpage :
53
Abstract :
Inductively coupled power transfer (ICPT) systems are now being used in applications where their efficiency and stability are critically important. In this paper, an ICPT pick-up is analyzed under conditions where the pick-up tuning is assumed to be essentially perfect, and all diodes are assumed to have continuous current flow in them. The analysis proceeds by replacing the existing parallel resonant tank and rectifier circuit with a DC source and transformer equivalent, thereby reducing the complexity of the circuit, and eliminating the diodes. The DC equivalent is shown to have the same energy storage and power capability as the original circuit and is accurate under all loadings for both transient and steady-state conditions. With this simplification, analytic transfer functions for the pick-up with respect to its excitation current and its control switch duty cycle are developed. The ICPT system model is shown to have multiple poles, with complex zeroes on the right half plane. The model allows a sophisticated controller to be designed to give the ICPT system the required stability at high efficiency.
Keywords :
inductive power transmission; state-space methods; DC analysis technique; DC equivalent; DC source; complex zeroes; continuous current flow; control switch duty cycle; control systems; diodes; efficiency; electromagnetic induction; energy storage; excitation current; inductive power transfer pick-ups; inductively coupled power transfer systems; pick-up tuning; power capability; power control; right half plane; stability; state space systems; steady-state conditions; transformer equivalent; transient conditions; Circuit optimization; Circuit stability; Diodes; Energy storage; RLC circuits; Rectifiers; Resonance; Steady-state; Switches; Transfer functions;
fLanguage :
English
Journal_Title :
Power Electronics Letters, IEEE
Publisher :
ieee
ISSN :
1540-7985
Type :
jour
DOI :
10.1109/LPEL.2003.819909
Filename :
1249501
Link To Document :
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