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Performance analysis of a dual stator linear switch reluctance machine with rectangular segments considering force ripples for long stroke conveyor applications

机译:长行程输送机应用中考虑力波动的矩形分段双定子线性开关磁阻电机的性能分析

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Linear switch reluctance machine (LSRM) has been a promising alternative for linear application systems despite its low force density and high force ripples. In long stroke conveyor applications, the stator of LSRM should be laminated requiring no gap or interruptions, being a difficulty in practical use. This paper presents a dual stator LSRM with magnetically isolated rectangular segments. The presented machine consists of a simple concentric winding but not similar to the conventional LSRM windings, being suitable for long stroke transportations and exhibiting high reliability and low cost. The machine design procedure is given and the key dimensions which crucially affect the machine performances such as force profile, average thrust and force ripple are discussed. It has been demonstrated that the presented machine has gained superiority over conventional LSRM in terms of higher propulsion force density and low cost.
机译:线性开关磁阻电机(LSRM)尽管具有较低的力密度和较高的力纹波,但已成为线性应用系统的有希望的替代方案。在长行程输送机应用中,LSRM的定子应层叠成无间隙或无中断的形状,这在实际使用中是很困难的。本文提出了一种具有磁隔离矩形段的双定子LSRM。所展示的机器由简单的同心绕组组成,但与传统的LSRM绕组不同,适用于长行程运输并且具有高可靠性和低成本。给出了机器设计程序,并讨论了关键影响机器性能的关键尺寸,例如力分布,平均推力和力波动。已经证明,所提出的机器在更高的推进力密度和低成本方面已经优于传统的LSRM。

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