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Highly Dynamic and High Precision Self Balanced Optical Mechanism

机译:高动态,高精度自平衡光学机构

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摘要

Ongoing developments of instruments reveal the need for fast and precise mechanisms [1]. These requirements are all the more significant when large payloads of hundreds grams, such as mirrors, optical plates, corner cubes or antennas are involved in the motion. Indeed, highly dynamic kinematics coupled with large inertia lead to parasitic reaction forces that interfere on the accurate measurement. This paper describes the study of a tilt mechanism reaching 300μrad of stroke in less than 3ms while cancelling at the same time the reaction forces resulting from this fast motion: Firstly a trade-off study leads to qualitative evaluation of the mechanism. Then a detailed mechanical design is performed to provide relevant model for automatic and control. Finally a test campaign is realized to characterize the prototype
机译:仪器的不断发展表明需要快速而精确的机制[1]。当运动中涉及数百克的大型有效载荷(例如镜子,光学板,角锥或天线)时,这些要求变得尤为重要。的确,高度动态的运动学加上较大的惯性会导致寄生反作用力,从而干扰精确测量。本文描述了一种倾斜机构的研究,该机构在不到3ms的时间内达到了300μrad的冲程,同时抵消了这种快速运动产生的反作用力:首先,要进行权衡研究,以对该机构进行定性评估。然后进行详细的机械设计,以提供用于自动和控制的相关模型。最终实现了测试活动以表征原型

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