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Rotor Position Detection in SRM Drive Utilizing Phase Shift Variations in a Formed Resonant Circuit

机译:利用形成的谐振电路中的相移变化来检测SRM驱动器中的转子位置

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In switched reluctance motors, each individual phase excitation must be synchronized with the rotor position which necessitates the need for a position sensing scheme. This paper presents a complete and novel method to indirectly detect the rotor position at standstill and also at low speeds in switched reluctance motor. The method utilizes current phase variation technique in conjunction with the use of resonant scheme. A circuit consists of an external resistance R, motor phase inductance, L (驴), and an external capacitance, C is formed and fed by a sinusoidal voltage having the same resonant frequency as the circuit. The current flowing through the resistor has the same frequency as the input voltage but can have different phase shift when compared to the input voltage due to the variation of phase inductance, L (驴) which is directly proportional to rotor position. The produced resistor voltage waveform is then compared to the input sinusoidal voltage waveform in order to obtain a pulse width proportional to the position of the rotor. The width of the pulse is determined accordance to the phase inductance which is directly proportional to the rotor position. Finally, the paper presents the results obtained which demonstrates the feasibility and practicability of the method and outlines the advantages of this method.
机译:在开关磁阻电动机中,每个相励磁必须与转子位置同步,这需要位置感测方案。本文提出了一种完整而新颖的方法,用于间接检测开关磁阻电机在静止和低速时的转子位置。该方法结合谐振方案利用电流相位变化技术。电路由外部电阻R,电机相位电感L(驴)和外部电容C组成,并由具有与电路相同的谐振频率的正弦电压供电。流经电阻器的电流与输入电压具有相同的频率,但与输入电压相比,由于相电感L(驴)的变化与输入位置成正比,相移可能会具有不同的相移。然后将产生的电阻器电压波形与输入的正弦电压波形进行比较,以获得与转子位置成比例的脉冲宽度。脉冲的宽度是根据与转子位置成正比的相电感确定的。最后,本文介绍了获得的结果,证明了该方法的可行性和实用性,并概述了该方法的优点。

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