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Titlebook: Electromagnetic Linear Machines with Dual Halbach Array; Design and Analysis Liang Yan,Lu Zhang,Zongxia Jiao Book 2017 Springer Science+Bus

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978-981-10-9589-4Springer Science+Business Media Singapore 2017
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Formulation of Magnetic Field,s chapter to enhance the flux density in air gap, and thus to improve the output performance of linear machines. Magnetic field in 3D space of a tubular linear machine with dual Halbach array is formulated based on Laplace’s and Poison’s equations. The analytical model is validated with numerical ca
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Armature Reaction Field and Inductance,ost studies have focused on magnetic field generated by permanent magnet poles, whereas less work has been done on armature reaction field. This chapter proposes a novel analytical modeling method to predict the armature reaction field of a coreless permanent magnet tubular linear machine (PMTLM) wi
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Machine Design and Optimization,le phase permanent magnet tubular linear machine is obtained analytically in Chap. .. Based on the analytical force model, penalty method and scanning method are employed to conduct parameter optimization to maximize the force output for a given machine volume. Then the influence of structure parame
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Research Prototype and Experiments, the analytical magnetic field model, force output model, and armature reaction field model proposed in Chaps. ., ., and ., respectively. The experimental results also facilitate the visualization of the magnetic field distribution, the force output variation, and armature reaction field analysis of
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Conclusion,dimensional pattern. A tubular linear machine with dual Halbach array is thus proposed to improve the magnetic flux density and the system force output. Specifically, it can not only increase the radial component of flux density that is important for axial force generation, but also decrease the rad
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Research Prototype and Experiments,reaction measurements are carried out on the machine and compared with the theoretical models. The experimental results confirm the proposed analytical model for further control study of the linear machine.
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