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Six-step commutation with round robin state machine to alleviate error in hall-effect-sensor reading for BLDC motor control

机译:轮转状态机进行六步换向,以减少用于BLDC电机控制的霍尔效应传感器读取中的误差

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Hall-effect sensors are commonly applied in brushless direct current (BLDC) motor control for rotor position detection. By knowing the exact position of the rotor, inverter could supply energy in synchronize to the BLDC motor state. As the motor is categorized as synchronous motor, those sensors are vital. Working out of synchronization not only makes drive system less efficient but also threaten the inverter as current requirement will be increased. Unfortunately, the sensor works in harsh environment where high current, high temperature, and high vibration are exist. Those conditions result in some incorrect position detections. In order to improve the hall-effect position accuracy, in this paper, a simple finite state machine (FSM) called round robin technique is implemented. This technique along with conventional R-C filter in the sensor line successfully suppresses error in the rotor position detection. This results in higher inverter reliability and smoother motor operation.
机译:霍尔效应传感器通常应用于无刷直流(BLDC)电机控制中,以检测转子位置。通过了解转子的精确位置,逆变器可以与BLDC电机状态同步地提供能量。由于电动机被归类为同步电动机,因此这些传感器至关重要。不同步的工作不仅会降低驱动系统的效率,还会威胁逆变器,因为电流需求会增加。不幸的是,该传感器在存在高电流,高温和高振动的恶劣环境中工作。这些条件会导致某些不正确的位置检测。为了提高霍尔效应位置精度,本文实现了一种简单的称为循环法的有限状态机(FSM)。该技术与传感器线中的常规R-C滤波器一起成功地抑制了转子位置检测中的错误。这样可以提高逆变器的可靠性,并使电动机运行更平稳。

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