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An Approximate Calculation Model for Electromagnetic Devices Based on a User-Defined Interpolating Function
Author(s) -
Xuerong Ye,
Jie Deng,
Yingqi Wang,
Guofu Zhai
Publication year - 2014
Publication title -
journal of magnetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.199
H-Index - 15
eISSN - 2233-6656
pISSN - 1226-1750
DOI - 10.4283/jmag.2014.19.4.378
Subject(s) - computer science , particle swarm optimization , relay , electromagnetic coil , reliability (semiconductor) , function (biology) , magnet , contactor , voltage , algorithm , electrical engineering , physics , engineering , biology , evolutionary biology , power (physics) , quantum mechanics
Optimization design and robust design are significant measures for improving the performance and reliability of electromagnetic devices (EMDs, specifically refer to relays, contactors in this paper). However, the implementation of the above-mentioned design requires substantial calculation; consequently, on the premise of guaranteeing precision, how to improve the calculation speed is a problem that needs to be solved. This paper proposes a new method for establishing an approximate model for the EMD. It builds a relationship between the input and output of the EMD with different coil voltages and air gaps, by using a user-defined interpolating function. The coefficient of the fitting function is determined based on a quantum particle swarm optimization (QPSO) method. The effectiveness of the method proposed in this paper is verified by the electromagnetic force calculation results of an electromagnetic relay with permanent magnet.

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