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Simultaneous Vibration Isolation and Pointing Control of Flexure Jointed Hexapods

机译:挠性节肢六足动物的同时振动隔离和指向控制

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摘要

Vibration isolation and precision pointing problems using hexapods have been separately investigated by several groups of researchers. Since many applications require simultaneous vibration isolation and precision pointing (e.g., telescopes, laser communication, and laser weapons), it is particularly useful to do both with a single device. A simultaneous control scheme is developed in this paper using acceleration feedback to provide high-frequency vibration isolation, while Cartesian pointing feedback provides low-frequency pointing. The compensation is divided by frequency because pointing sensors often have a low bandwidth, while acceleration sensors often have a poor low-frequency response. Methods for unifying these finite bandwidth joint and Cartesian controls to perform simultaneous pointing and vibration isolation on a single platform are developed and verified. Experiments on the University of Wyoming hexapods show that this scheme provides a viable control bandwidth.
机译:几组研究人员已经分别研究了使用六脚架的振动隔离和精确指向问题。由于许多应用程序需要同时进行隔振和精确指向(例如望远镜,激光通信和激光武器),因此使用单个设备同时进行这两个操作特别有用。本文提出了一种同时控制方案,该方案使用加速度反馈来提供高频振动隔离,而笛卡尔指向反馈则提供低频指向。补偿除以频率,因为指向传感器通常具有较低的带宽,而加速度传感器通常具有较差的低频响应。开发并验证了将这些有限带宽联合和笛卡尔控制统一以在单个平台上执行同时指向和振动隔离的方法。怀俄明大学六足动物大学的实验表明,该方案提供了可行的控制带宽。

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