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A novel analytical model of air-gap permeance in tubular linear switched reluctance actuators with hybrid flux paths

机译:具有混合磁通路径的管状线性开关磁阻致动器气隙磁导率的新型分析模型

摘要

Due to simple and robust configuration, and without any coils and magnets on movers, a tubular linear switched reluctance actuator (TLSRA) is a promising candidate for applications of frequently reciprocating linear motion, such as linear compressors and automotive active suspension sys-tems[1-2]. For air-gap in a TLSRA, there are the longitudinal and transverse magnetic paths due to various mover positions. Change in air-gap permeance in a TLSRA results in the thrust force, which drives the mover for linear motion. Thus, the air-gap permeance is the crucial parameter for computing the thrust force in the electromagnetic design and estimating the real-time thrust force in force control of TLSRAs. In general, the air-gap permeance at two special positions can be calculated analytically, such as the maximum and minimum air-gap permeance[3]. It is a challenging issue that an analytically model is developed to compute the air-gap permeance at arbitrary mover positions. This paper focuses on that permeance model development.
机译:由于简单而坚固的配置,并且在动子上没有任何线圈和磁铁,管状线性开关磁阻致动器(TLSRA)是频繁往复线性运动应用的有希望的候选者,例如线性压缩机和汽车主动悬架系统[1] -2]。对于TLSRA中的气隙,由于动子位置不同,存在纵向和横向磁路。 TLSRA中气隙导磁率的变化会产生推力,从而推动动子进行线性运动。因此,气隙磁导率是在电磁设计中计算推力和估算TLSRA力控制中实时推力的关键参数。通常,可以解析地计算出两个特殊位置的气隙渗透率,例如最大和最小气隙渗透率[3]。开发分析模型以计算任意动子位置的气隙渗透率是一个具有挑战性的问题。本文重点介绍渗透模型的开发。

著录项

  • 作者

    Xue X; Cheng K; Bao Y; Zhang Z;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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