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Robust Full-Closed Control-Based Vibration Suppression for Positioning Devices with Strain Wave Gearing

机译:基于鲁棒的全闭合控制基振动抑制,用于应变波齿轮的定位装置

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The plenary lecture presents a practical robust compensator design technique for precision positioning devices including strain wave gearing. Since HarmonicDrive?1 gear (HDG), a typical strain wave gearing, inherently possesses non-linear properties known as angular transmission errors (ATEs) due to structural errors and flexibility in the mechanisms, the ideal positioning accuracy corresponding to the apparent resolution cannot be essentially attained at the output of gearing in the devices. In addition, mechanisms with HDGs generally excite resonant vibrations due to the periodical disturbance by ATEs, especially in the condition that the frequency of synchronous components of the ATE corresponds to the critical mechanical resonant frequency. The lecture, therefore, focuses on the vibration suppression in positioning, in order to improve the performance deteriorations by applying a robust full-closed control. In the compensator design, under the assumption that full-closed feedback positioning systems can be constructed using load-side (i.e. output of the gearing) sensors, an H compensator design has been adopting to shape frequency characteristics on the mechanical vibration. The proposed approach has been applied to precision motion control of actual devices as servo actuators, and verified through numerical and experimental evaluations.Registered Trademark in Japan.
机译:全体讲座呈现了一种实用的稳健补偿器设计技术,可用于精密定位装置,包括应变波齿轮传动装置。自解答? 1 齿轮(HDG),典型的应变波齿轮传动装置,固有地具有由于机构的结构误差和灵活性而被称为角度传输误差(ATES)的非线性特性,对应于表观分辨率的理想定位精度不能基本上达到设备中的齿轮输出。另外,由于ATES的周期性干扰,具有HDG的机制通常是由于ATES的周期性干扰而激发谐振振动,特别是在ATE的同步分量的频率对应于临界机械谐振频率的情况下。因此,讲座专注于定位中的振动抑制,以通过应用稳健的全闭合控制来改善性能劣化。在补偿器设计中,假设可以使用负载侧(即,传动装置的输出)传感器构建全闭反馈定位系统,一个 h 补偿器设计一直在采用机械振动的形状频率特性。所提出的方法已应用于实际设备的精密运动控制作为伺服执行器,并通过数值和实验评估验证。在日本提醒商标。

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