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TWO DIMENSIONAL INPUT SHAPING FOR ONE DIMENSIONAL CONTINUA

机译:一维连续的二维输入成形

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摘要

This paper extends input shaping control to one dimensional continua. Unlike discrete systems where the input is shaped only in the temporal domain, temporal and spatial input shaping can produce zero residual vibration in setpoint position control of distributed strings and beams. For collocated and noncollocated boundary control of strings and domain control of strings and pinned beams, the response to step inputs is solved in closed form using delays. For a clamped beam model, a closed form infinite modal series is used. The boundary controlled string can be setpoint regulated using two-pulse Zero Vibration (ZV) and three-pulse Zero Vibration and Derivative (ZVD) shapers but ZVD is not more robust to parameter variations than ZV. Noncolocated ZV and ZVD boundary control enables rigid body translation of a string with zero residual vibration. Domain controlled strings and pinned beams with spatial input distributions that satisfy certain orthogonality conditions (e.g. midspan point load or uniformly distributed load) can be setpoint regulated with shaped inputs. For the cantilevered beam, modal shaping of the input distribution and ZV or ZVD temporal shaping drives the tip to the desired position with zero residual vibration.
机译:本文将输入整形控制扩展到一维连续体。与仅在时间域上对输入进行整形的离散系统不同,时间和空间输入整形可在分布式弦和梁的设定点位置控制中产生零残留振动。对于弦的并置和非共置边界控制以及弦和固定梁的域控制,对阶跃输入的响应通过使用延迟以闭合形式求解。对于夹紧梁模型,使用封闭形式的无限模态序列。可以使用两脉冲零振动(ZV)和三脉冲零振动和微分(ZVD)整形器对边界控制的弦进行设定点调节,但是ZVD的参数变化不比ZV鲁棒。非共置ZV和ZVD边界控制可实现零残余振动的弦的刚体平移。具有输入满足特定正交性条件(例如中跨点载荷或均匀分布载荷)的空间输入分布的域控制弦和固定梁可以通过定型输入进行设定点调节。对于悬臂梁,输入分布的模态整形和ZV或ZVD的时间整形将尖端以零残留振动的形式驱动到所需位置。

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