Harmonic Balance Finite Element Method:Applications in Nonlinear Electromagnetics and Power Systems(Wiley - IEEE)

谐波平衡有限元法:非线性电磁学与动力系统的应用

电子技术

售   价:
1124.00
发货周期:预计3-5周发货
作      者
出  版 社
出版时间
2016年08月03日
装      帧
精装
ISBN
9781118975763
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页      码
288
开      本
168.3x244.5mm
语      种
英文
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图书简介
Finite element analysis (FEA) is a powerful and highly accurate tool for determining electric machine characteristics. The harmonic balance finite element method (HBFEM) is a potential strategy to determine the steady-state behavior of electric machines. It has applications in electromagnetic simulation software, and the design and analysis of electric machines; the advantages are that it is faster, has reduced computational complexity, and improved accuracy.  Based on the authors many years experience, the book includes the theoretical mathematic concepts of HBFEM and advanced computational techniques such as the decomposed algorithm, fix point, smart grid and the visualization of field distribution. It covers various harmonic problems in EM field and power systems, and the FEM based harmonic problem solving techniques. The authors provide a solution mechanism that can be utilized in new power system trends involving nonlinear problems (such as those involving high efficiency illumination devices and highly utilized machine cores).  The book covers both background materials and newly developed topics. A few new topics are introduced such as the HBFEM for harmonic problems in power electronics and high frequency magnetics, multi-pulse hvdc transformer, dc biased transformer in renewable energy system and smart grid, hvdc transformers with dc biased case, and geomagnetics and geomagnetics induced current in power transformer.  The authors also include the computational algorithm by MATLAB in the appendix. It is expected that HBFEM will become a more useful and practical technique over the next 5 years due to the HVDC power system, renewable energy system and Smart Grid, HF magnetic used in DC/DC converter, and Multi-pulse transformer for HVDC power supply. Electrical and electronic product design engineers will use these technologies for their design work, and HBFEM-based computational electromagnetic and computer modelling and simulation techniques will play an important role in electrical power engineering and electronic product design due to this technique currently not being available in any computational element method (CEM) commercial package.
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