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Feed-forward inverse control for transient waveform replication on electro-hydraulic shaking table

机译:前馈逆控制,用于在电动液压振动台上复制瞬态波形

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摘要

In this paper, an improved feed-forward inverse control scheme is proposed for transient waveform replication (TWR) on an electro-hydraulic shaking table (EHST). TWR is to determine whether a test article can remain operational and retain its structural integrity when subjected to a specific shock and vibration environment. Feed-forward inverse transfer function compensation is a useful technique to improve the tracking accuracy of the TWR on the EHST system due to their inherent hydraulic dynamics. Whenever a feed-forward inverse transfer function is employed, it is critical to design the identification accuracy of the inverse transfer function. A combined control strategy, which combines a feed-forward inverse transfer function compensation approach with a simple internal model control (IMC) and a real-time feedback controller, is proposed to minimize the effect of the system uncertainty and modeling error, and further to improve the tracking accuracy of the TWR. Thus, the proposed control strategy combines the merits of feed-forward inverse transfer function compensation and IMC. The procedure of the proposed control strategy is programmed in MATLAB/Simulink, and then is compiled to a real-time PC with Microsoft Visual Studio.NET for implementation. Simulation and experimental results demonstrated the viability of the proposed combined control strategy.
机译:本文提出了一种改进的前馈逆控制方案,用于电动液压振动台(EHST)上的瞬态波形复制(TWR)。 TWR将确定测试物品在特定的冲击和振动环境下是否可以保持运行并保持其结构完整性。前馈逆传递函数补偿是一种有用的技术,由于其固有的液压动力学特性,可提高EHST系统上TWR的跟踪精度。每当使用前馈逆传递函数时,设计逆传递函数的识别精度至关重要。为了将系统不确定性和建模误差的影响降至最低,提出了一种组合控制策略,该策略将前馈逆传递函数补偿方法与简单的内部模型控制(IMC)和实时反馈控制器相结合。提高TWR的跟踪精度。因此,所提出的控制策略结合了前馈逆传递函数补偿和IMC的优点。提出的控制策略的过程在MATLAB / Simulink中进行编程,然后通过Microsoft Visual Studio.NET编译到实时PC上进行实施。仿真和实验结果证明了所提出的组合控制策略的可行性。

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