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MODELING AND FORCED VIBRATION ANALYSIS OF ROD-LIKE SOLID-STATE ACTUATORS

机译:棒状固态执行器的建模与强制振动分析

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摘要

Solid-state smart actuators are widely utilized in a variety of micro and nano-positioning applications. Most of today's modeling frameworks adopt lumped-parameter representation for system dynamics due to its more straightforward analysis and control. In this article, a distributcd-parameters rod-like configuration is considered for free and forced motion analysis of structure. To include the effects of widely-used flexural mechanisms, a mass-spring-damper boundary condition is considered for the system. Moreover, the effect of electromechanical actuation is included as a concentrated force at the boundary. The problem is then divided into two parts: first part deals with free motion analysis of system to obtain eigenvalues and eigenfunctions using the expansion theorem and a standard eigenvalue problem procedure. The effects of different boundary mass and spring values on the natural frequencies and mode shapes are demonstrated, which indicate their significant contribution to system dynamical properties. In the second part, forced motion analysis of system and its state-space conversion tools are presented. It is shown that distributed-parameters modeling is inevitable when precision high frequency motions are demanded. This can enhance control bandwidth and performance of rod-like solid-state actuators such as piezoelectric and magnetostrictive positioners with moving to next generation digital signal processing systems which enable ultrahigh-frequency sampling rates.
机译:固态智能致动器广泛用于各种微型和纳米定位应用中。由于其更加直接的分析和控制,大多数日本建模框架采用了用于系统动态的集合参数表示。在本文中,考虑了用于结构的自由和强制运动分析的分布式参数杆状配置。为了包括广泛使用的弯曲机构的效果,考虑了系统的质量弹簧阻尼边界条件。此外,机电致动的效果包括在边界处的浓缩力。然后将问题分为两部分:第一部分处理系统的自由运动分析,使用扩展定理和标准特征值问题程序获得特征值和特征障碍。证明了不同边界质量和弹簧值对自然频率和模式形状的影​​响,这表明它们对系统动态特性的显着贡献。在第二部分中,提出了系统的强制运动分析及其状态空间转换工具。结果表明,当需要精确的高频运动时,分布式参数建模是不可避免的。这可以增强控制带宽和性能的杆状固态致动器,例如压电和磁致伸缩定位器,其移动到下一代数字信号处理系统,其实现超高频率采样率。

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