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New digital sensor design for rotor displacement measurement based on the coupled oscillators

机译:基于耦合振荡器的用于转子位移测量的新型数字传感器设计

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Measurement of rotor position in bearingless motors is of essence for proper operation. Non accuracy and low sampling rate in measurement process leads to the collision of rotor and stator which could end with motor destruction. This paper presents new concept for rotor position measurement based on Eddy current principle and usage of Time to Digital Converters (TDC) with Digital Signal Processors (DSP) in order to get accurate digital information on rotor position. New concept presented in paper is based on injection locking phenomena between coupled oscillators. Two opposite pair of sensing oscillators is electrically coupled via resistor. In injection locking conditions phase shift between coupled oscillators is proportional to rotor movement. Phase shift is measured with TDC and information is passed to DSP over SPI communication link. DSP calculates the rotor position which is passed to power electronic circuit for rotor positio n control.
机译:无轴承电动机中转子位置的测量对于正常运行至关重要。测量过程中的不准确性和低采样率会导致转子和定子的碰撞,并最终导致电机损坏。本文提出了一种基于涡流原理的转子位置测量新概念,以及将时间数字转换器(TDC)与数字信号处理器(DSP)配合使用以获取有关转子位置的准确数字信息。本文提出的新概念基于耦合振荡器之间的注入锁定现象。相对的两个传感振荡器对通过电阻器电耦合。在注入锁定条件下,耦合振荡器之间的相移与转子运动成正比。用TDC测量相移,然后通过SPI通信链路将信息传递给DSP。 DSP计算转子位置,该位置将传递到功率电子电路以进行转子正位置控制。

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