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An investigation on a semi-active damping of forced structural vibrations by means of controllable structural nodes

机译:通过可控结构节点对强制结构振动半主动阻尼的研究

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Vibration mitigation in space structures creates a unique class of a technical problem where resistant for outgassing and non-fluidic solutions are preferable. Additionaly, a vibration induced by time-varying excitations needs to be effectively reduced. The vibration mitigation task is specifically difficult in the case of light, slender and inherently flexible structures of various types, such as supporting structures, deployable structures, modular structures or wide-span skeletal roofing structures. This study presents a concept of a vibration attenuation method based on semi-active joints and dedicated to frame structures under forced vibration excitation. The presented investigation contains an analysis of the problem of the optimal control of a structure fitted with semi-active structural members. Furthermore, an adequate model of the semi-active joints is developed and a numerical example is presented. Finally, the research provides an experimental verification of the developed control algorithms, which is conducted on a test stand in a laboratory environment.
机译:空间结构中的减振产生了一种独特的技术问题,其中优选用于除气相和非流体溶液。辅助,需要有效地减少由时变激励引起的振动。在各种类型的光,细长和固有的柔性结构的情况下,振动缓解任务是特别困难的,例如支撑结构,可展开的结构,模块化结构或宽跨度骨架屋顶结构。本研究介绍了基于半主动接头的振动衰减方法的概念,并专用于强制振动激励下的框架结构。所提出的调查含有对安装半主动结构构件的结构的最佳控制问题的分析。此外,开发了半主动接头的适当模型,并提出了数值示例。最后,该研究提供了开发控制算法的实验验证,该算法在实验室环境中进行测试台进行。

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