Dynamic Analysis of Compliant LEG of a Stewart-Gough Type Parallel Mechanism

Elango Natarajan, A.R. Venkataramanan, R. Sasikumar, S. Parasuraman, G. Kosalishkwaran
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引用次数: 3

Abstract

It is important to test all the functional modules of the space systems before it is being launched. The very stringent tests need to be conducted particularly for manned missions. The vibration is one of the most significant phenomena involved in testing of space systems. As the system faces periodic as well as random vibrations containing both high and low frequency components, testing its responses under the same type of vibration will help in making more realistic observations. Stewart-Gough type platform is the predominantly used platform to test space systems. The existing platforms are operated at low frequency and are capable of producing low frequency response only. In this paper, a single compliant leg is introduced in Stewart-Gough type platform. The respective model is developed and analyzed to investigate the effect of leg compliance on the dynamics of platform. It is to understand whether the compliant arrangement in the leg itself will generate required high frequency component along with the low frequency (generated by leg actuator) component or an additional high frequency actuation is required. The result shows that the top platform can generate an extra high frequency response at resonance conditions in addition to the low frequency response corresponding to the input which regarded a significant contribution to the system.
Stewart-Gough型并联机构柔性腿的动力学分析
在发射前对空间系统的所有功能模块进行测试是很重要的。需要进行非常严格的测试,特别是对载人飞行任务。振动是空间系统测试中最重要的现象之一。由于系统面临周期性和随机振动,同时包含高频和低频成分,因此在相同类型的振动下测试其响应将有助于获得更实际的观察结果。斯图尔特-高夫型平台主要用于测试空间系统。现有的平台在低频下运行,只能产生低频响应。本文在Stewart-Gough型平台中引入了单柔性腿。建立并分析了相应的模型,以研究腿柔度对平台动力学的影响。这是为了了解腿本身的柔性布置是否会随着低频(由腿执行器产生)组件产生所需的高频分量,还是需要额外的高频驱动。结果表明,在谐振条件下,除了输入对应的低频响应外,顶部平台还能产生超高频响应,对系统的贡献很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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