DocumentCode :
1471094
Title :
Stepwise quadratic state-space modeling technique for simulation of power electronics circuits
Author :
Tse, K.K. ; Chung, Henry Shu-Hung ; Hui, S.Y.R.
Author_Institution :
Dept. of Electron. Eng., City Univ. of Hong Kong, Kowloon, Hong Kong
Volume :
46
Issue :
1
fYear :
1999
fDate :
2/1/1999 12:00:00 AM
Firstpage :
91
Lastpage :
99
Abstract :
A fast and accurate technique for simulation of power electronics circuits is presented. The methodology begins by using Chebyshev polynomials to derive an adaptive stepwise quadratic state-space model for each piecewise-linear circuit topology. The state-space equation sets are integrated with modified nodal equations. The key feature of this algorithm is that it gives an approximate value of the optimum simulation step size for analysis of each circuit topology in order to achieve a desired accuracy in calculating the state transition matrix of the topology. Moreover, the algorithm hybridizes the advantages of calculating the circuit responses at circuit level and determining switching instants at device level. The switching instants are calculated directly by solving simple quadratic equations. Furthermore, it is unnecessary to have prior knowledge of the circuit operations, such as the topology sequence and duration. The algorithm automatically looks for a valid topology at any time instant. The proposed method is illustrated with the examples of a practical induction heater and a boost DC/DC regulator. The theoretical predictions are verified with the results obtained in experiment and available literature
Keywords :
Chebyshev approximation; DC-DC power convertors; circuit simulation; induction heating; piecewise linear techniques; polynomials; power electronics; state-space methods; switching circuits; Chebyshev polynomials; adaptive stepwise quadratic state-space model; boost DC/DC regulator; circuit responses; circuit topology; induction heater; modified nodal equations; piecewise-linear circuit topology; power electronics circuits simulation; state transition matrix; stepwise quadratic state-space modeling; switching instants determination; switching regulators; Algorithm design and analysis; Analytical models; Chebyshev approximation; Circuit analysis; Circuit simulation; Circuit topology; Equations; Piecewise linear techniques; Polynomials; Power electronics;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/41.744394
Filename :
744394
Link To Document :
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