Title of article
Implementation of a decoupled optimization technique for design ofswitching regulators using genetic algorithms
Author/Authors
ZHANG، JUN نويسنده , , Lo، Wai Lun نويسنده , , H.S.H.، Chung, نويسنده , , S.Y.، Hui, نويسنده , , A.K.-M.، Wu, نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2001
Pages
12
From page
752
To page
763
Abstract
This paper presents an implementation of a decoupled optimization technique for design of switching regulators using genetic algorithms (GAs). The optimization process entails the selection of component values in a switching regulator, in order to meet the static and dynamic requirements. Although the proposed method inherits characteristics of evolutionary computations that involve randomness, recombination, and survival of the fittest, it does not perform a whole-circuit optimization. Thus, intensive computations, that are usually found in stochastic optimization techniques can be avoided. Similar to many design approaches for power electronics circuits, a regulator is decoupled into two components, namely the power conversion stage (PCS) and the feedback network (FN). The PCS is optimized with the required static characteristics, whilst the FN is optimized with the required static and dynamic behaviors of the whole system. Systematic optimization procedures are described and the technique is illustrated with the design of a buck regulator with overcurrent protection. The predicted results are compared with the published results available in the literature and are verified with experimental measurements.
Keywords
Power-aware
Journal title
IEEE TRANSACTIONS ON POWER ELECTRONICS
Serial Year
2001
Journal title
IEEE TRANSACTIONS ON POWER ELECTRONICS
Record number
104637
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