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Wireless actuation characteristics and modal control effectiveness of segmented photostrictive actuators

机译:分段可照处执行器的无线致动特性和模态控制效能

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Photostrictive materials, such as PLZT, which have the ability to convert high-energy light into mechanical motion, are emerging as new actuation materials. In contrast to the conventional transducers, photostrictive materials can produce actuation strains resulting from irradiation from certain wavelength light, which are immune from the electromagnetic interferences. And this photo-driven process is the photodeformation effect. In this paper, characteristics of the photodeformation effect are calibrated. The light intensity, the temperature and the voltage leakage's influences to the characteristics of the photostrictive actuator are also evaluated. Since actuator's location is one of the critical issues to decide the structural vibration control effectiveness, the modal control action and optimization of actuator placement for distributed control of a hybrid patched optical actuator/beam is investigated. An effective method to achieve the best vibration control is inferred from the parametric study.
机译:具有将高能光线转换为机械运动的Plzt等可照性材料,正在成为新的致动材料。与传统的换能器相比,可照性材料可以产生由某些波长光照射产生的致动菌株,这些波长光从电磁干扰免疫。而这一照片驱动过程是光电变形效果。本文校准了光导效应的特性。还评估了光强度,温度和电压泄漏对可吸收致动器特性的影响。由于执行器的位置是决定结构振动控制效能的关键问题之一,研究了混合贴片光致动器/光束的分布式控制的致动器放置的模态控制作用和优化。从参数研究推断出实现最佳振动控制的有效方法。

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