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Vibration control design considering quantization error for an on-off control system including input time-delay

机译:包含输入延时的开关控制系统中考虑量化误差的振动控制设计

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A method by which to suppress large displacement vibration in a pneumatic isolation table is considered. An external force can be applied to the pneumatic isolation table by increasing or decreasing the air pressure in the air springs used in this system. In order to suppress large displacement vibration, it is necessary to switch the control input instantly. Therefore, the plant includes an on-off action and an input time-delay as the control input. The stabilization of this type of system is difficult using conventional linear feedback controls such as the optimal regulator. Thus, a method is proposed that ensures the system stability by changing the input based on the evaluation of quantization error arising from the on-off drive. Furthermore, the proposed method is applied to a pneumatic isolation table and its performance is verified through numerical simulations and experiments.
机译:考虑了一种在气动隔离台中抑制大位移振动的方法。通过增加或减少该系统中使用的空气弹簧中的气压,可以将外力施加到气动隔离台上。为了抑制大位移振动,必须立即切换控制输入。因此,工厂包括开关动作和输入延时作为控制输入。使用常规的线性反馈控制(例如最佳调节器)很难稳定这种类型的系统。因此,提出了一种方法,该方法基于对由开-关驱动引起的量化误差的评估,通过改变输入来确保系统稳定性。此外,将所提出的方法应用于气动隔离台,并通过数值模拟和实验验证了其性能。

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