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Direct Position Control for Ultrahigh-Speed Switched-Reluctance Machines Based on Low-Cost Nonintrusive Reflective Sensors

机译:基于低成本非侵入式反射传感器的超高速开关磁阻电机的直接位置控制

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摘要

High-speed switched-reluctance machines (SRMs) are gaining popularity in both academia and industrial communities. One of the reasons that limit the maximum speed of SRMs is the speed limit of commercial rotary encoders due to mechanical considerations. In this paper, a novel direct position control for ultrahigh-speed SRMs is proposed based on nonintrusive reflective sensors. It uses reflective optical sensors to detect the relative position between the rotor and the stator so as to control theonandoffstates of the switches directly through the analog output trigger signals generated by the optical sensors. In order to generate the maximum output torque, the switching-onand switching-offangles are optimized based on the equivalent Simulink model with the torque- and flux-linkage characteristics obtained from a corresponding finite-element analysis of a high-speed SRM. Finally, the proposed method is validated by experiments with a 500-W 4/2 SRM running up to 100 000 r/min. The proposed control system has many advantages such as low cost and virtually no speed limit, which makes it suitable for ultrahigh-speed applications.
机译:高速开关磁阻电机(SRM)在学术界和工业界都越来越流行。限制SRM最高速度的原因之一是出于机械方面的考虑,商用旋转编码器的速度受到限制。本文提出了一种基于非侵入式反射传感器的新型超高速SRM直接位置控制。它使用反射式光学传感器来检测转子和定子之间的相对位置,从而控制 n nand n 关闭状态 n直接通过光学传感器生成的模拟输出触发信号。为了产生最大输出扭矩,切换- n n和切换- n off n的角基于等效Simulink模型进行优化,该模型具有从相应的有限元获得的转矩和磁链特性高速SRM的分析。最后,通过以高达100r / min的速度运行500 W 4/2 SRM的实验对提出的方法进行了验证。所提出的控制系统具有许多优点,例如低成本和几乎没有速度限制,这使其适合于超高速应用。

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