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Magnetic saturation of permanent magnet motor coil as key effect for initial rotor position detection

机译:永磁电动机线圈的磁饱和是初始转子位置检测的关键作用

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Permanent magnet (PM) motors, due to it's simplicity, reliability and overall efficiency are currently taking "most wanted" epithet in the number of consumer appliances. In recent two decades a lot of scientific papers were published regarding sensor-less control of permanent magnet DC motors. One of the most critical challenges is start from the stand still, with or without load, due to absence of back electromotive force in the motor coils. Core magnetic effect which enables detection of position, when motor is still, is based on magnetic saturation. Aim of this paper is to give magnetic explanation of this phenomena, which is generally neglected in most of motor control related textbooks and papers as well, also most of the motor models are based on linear magnetic approximation of the coils, hiding this key effect which provides information about initial position.
机译:永磁(PM)电动机由于其简单性,可靠性和整体效率,目前在许多消费类电子产品中被视为“头号通缉”。在最近的二十年中,发表了许多有关永磁直流电动机的无传感器控制的科学论文。最严峻的挑战之一是,由于电机线圈中没有反电动势,无论有负载还是无负载,都必须从静止状态开始。能够在电动机静止时检测位置的核心磁效应是基于磁饱和度的。本文的目的是对这种现象进行磁学解释,在大多数与电机控制有关的教科书和论文中通常都忽略了这一现象,而且大多数电机模型都基于线圈的线性磁近似,从而掩盖了这种关键效应。提供有关初始位置的信息。

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