首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >EXPERIMENTAL VALIDATION OF SIMULTANEOUS GUST ALLEVIATION AND ENERGY HARVESTING FOR MULTIFUNCTIONAL COMPOSITE WING SPARS
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EXPERIMENTAL VALIDATION OF SIMULTANEOUS GUST ALLEVIATION AND ENERGY HARVESTING FOR MULTIFUNCTIONAL COMPOSITE WING SPARS

机译:多功能复合翼翼同时消雾和能量收集的实验验证

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Vibration suppression in flexible structures is becoming an important design problem to develop energy-autonomous systems powered using the harvested ambient energy. Reduced energy control laws are developed to address the trend towards autonomous ultra-light weight aerospace structures with limited energy supply. Experiments build upon recent advances in harvester, sensor and actuator technology that have resulted in thin, light-weight multi-layered composite wing spars. These beam like multifunctional spars are designed to be capable of alleviating wind gust of small Unmanned Aerial Vehicles (UAVs) using the harvested energy. Experimental results are presented for cantilever wing spars with micro-fiber composite transducers controlled by reduced energy controllers with a focus on two vibration modes. A reduction of 16dB and 11dB is obtained for the first and the second mode using the harvested ambient energy. This work demonstrates the use of reduced energy control laws for solving gust alleviation problems in small UAVs, provides the experimental verification details, and focuses on applications to autonomous light-weight aerospace systems.
机译:柔性结构中的振动抑制已成为开发使用收集的环境能量提供动力的能量自治系统的重要设计问题。制定了减少能源控制法则,以解决能源供应有限的自主超轻型航空航天结构的趋势。实验建立在收割机,传感器和执行器技术的最新进展的基础之上,这些进展已经导致了薄,轻量的多层复合翼翼梁。这些类似光束的多功能梁设计用于利用所收集的能量缓解小型无人机(UAV)的阵风。提出了悬臂翼梁的实验结果,该悬臂翼梁具有由减少能量控制器控制的微纤维复合换能器,重点是两种振动模式。使用收获的环境能量,第一模式和第二模式可获得16dB和11dB的降低。这项工作展示了减少能量控制法则在解决小型无人机中的阵风缓解问题上的应用,提供了实验验证细节,并着重于在自主轻型航空航天系统中的应用。

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