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Disturbance Modeling based on Fourier Series for Precise Reaction Force Estimation in Semicircular Linear Motor

机译:基于傅里叶级数的扰动建模用于精确估计半圆直线电动机的反作用力

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This paper presents a disturbance modeling method for a semicircular linear motor called circular shaft motor (CSM). The CSM is a direct-drive motor that moves along the circumference of a circle, and is expected to realize multiple-degree-of-freedom (MDOF) haptic applications. To control the contact force in a CSM system, an observer is implemented to estimate the reaction force instead of using a force sensor. However, the estimated reaction force includes an estimation error caused by forces other than the reaction force. Therefore, a disturbance modeling method for the CSM is proposed to exclude the estimation error. In the proposed method, the variation in characteristics that depend on the velocity is approximated by a Fourier series. To evaluate the adequacy of the model, Akaike's information criterion (AIC) is introduced. To validate the effectiveness of the proposed method, a force control test is performed with the proposed disturbance model on a CSM. In addition, a bilateral control test is conducted to demonstrate the usefulness of the proposed method for force transmission.
机译:本文提出了一种称为圆形轴电动机(CSM)的半圆形线性电动机的扰动建模方法。 CSM是沿圆周运动的直接驱动电机,有望实现多自由度(MDOF)触觉应用。为了控制CSM系统中的接触力,可以使用观察者来估计反作用力,而不是使用力传感器。但是,推定反作用力包含反作用力以外的力引起的推定误差。因此,提出了一种针对CSM的干扰建模方法,以排除估计误差。在提出的方法中,取决于速度的特性变化通过傅立叶级数近似。为了评估模型的充分性,引入了Akaike的信息标准(AIC)。为了验证所提出方法的有效性,在CSM上使用所提出的扰动模型进行了力控制测试。另外,进行了双边对照试验以证明所提出的力传递方法的有用性。

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