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Position Estimation and Compensation Based on a Two-Step Extended Sliding-Mode Observer for a MSFESS

机译:基于两个步骤扩展滑动模式观察者的位置估计和补偿MSFESS

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This paper aims to deal with the problem of rotor position estimation and compensation for a magnetically suspended flywheel energy storage system under the consideration of measurement noise and unknown disturbances. First, the flywheel system working principle and description are analyzed and, based on this, the mathematical model as well as the coordinates transformation are introduced. For the purpose of the state estimation, a two-step extended sliding-mode observer is considered to obtain the estimates of the rotor angular position. In this control strategy, a traditional sliding-mode observer is adopted as a first-step original state estimator. After that, the relationship between the angular position and the estimation error is established and a second-step observer is designed to obtain the estimation of the error. The estimated error is then used to compensate the real values of the rotor angular position generated by the first-step observer. To reject the influences of the measurement noise and unknown disturbances, the H-infinity optimization strategy is considered to determine the second-step observer structure. Finally, experimental results are presented to demonstrate the effectiveness of the proposed method. It is demonstrated that the proposed two-step observer method has a better estimation accuracy and control performance.
机译:本文旨在对付转子位置估计和补偿的用于考虑测量噪声和未知扰动的下磁悬浮飞轮储能系统的问题。首先,飞轮系统的工作原理和说明进行了分析,并在此基础上,数学模型以及坐标变换进行了介绍。为状态估计的目的,两步扩展滑动方式观测被认为得到转子角度位置的估计。在该控制策略,一个传统的滑动方式观测器被采用作为第一步骤原始状态估计。此后,角位置和估计误差之间的关系被建立和第二步观测器的设计,以获得误差的估计。然后,将估计误差被用于补偿由所述第一步骤的观察者产生的转子角位置的实际值。要拒绝测量噪声和未知扰动的影响,在H-无穷优化策略被认为是确定第二步观察者结构。最后,实验结果都证明了该方法的有效性。据证实,所提出的两步骤方法观察者具有更好的估计精度和控制性能。

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