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A simple sensorless control strategy for IPMSM in 1 MW flywheel energy storage system

机译:1 MW飞轮储能系统中IPMSM的简单无传感器控制策略

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In recent decades, the flywheel energy storage system (FESS) has developed rapidly. Field oriented control is a core technology in the control of the interior permanent magnet synchronous motor (IPMSM), which is usually selected as the flywheel motor. The rotor angle and the speed of the IPMSM are important variables in the field oriented control. In industrial applications of the large-capacity FESS, however, the speed sensor could be unreliable due to the external interference and hence it is difficult to obtain the precise values of those two variables. In this paper, a simple sensorless control strategy is proposed in order to evade the measurement of the rotor angle and the speed. The proposed strategy is divided into two parts in accordance with the flywheel's speed and an angle estimation method based on the back electromotive force (back-EMF) is adopted after the starting of the flywheel. In the proposal, the rotor position can be estimated accurately during the system's whole operation period, including the charging status, the discharging status and the standby status, and the continuous information of the rotor angle and the speed can be obtained. The proposed sensorless control strategy is analyzed theoretically, and experiments are conducted on a 1MW FESS. The experimental results verify the effectiveness of the proposed strategy.
机译:近几十年来,飞轮储能系统(FESS)迅速发展。磁场定向控制是控制内部永磁同步电动机(IPMSM)的核心技术,该电动机通常被选为飞轮电动机。 IPMSM的转子角度和速度是磁场定向控制中的重要变量。但是,在大容量FESS的工业应用中,由于外部干扰,速度传感器可能不可靠,因此很难获得这两个变量的精确值。本文提出了一种简单的无传感器控制策略,以规避转子角和速度的测量。所提出的策略根据飞轮的速度分为两部分,并且在飞轮启动后采用基于反电动势(back-EMF)的角度估计方法。在该建议中,可以准确估计系统在整个运行期间的转子位置,包括充电状态,放电状态和待机状态,并且可以获得转子角和速度的连续信息。从理论上分析了提出的无传感器控制策略,并在1MW FESS上进行了实验。实验结果验证了所提策略的有效性。

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