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On the computation of compatible trajectories for hydraulic shaketables

机译:液压振动台兼容轨迹的计算

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Dynamic testing is often used to study the response of structures under earthquake loading. Such testing is either carried out with a prescribed input such as an earthquake ground motion, or using computation-in-the-loop, where a physical substructure is made to interact with a virtual substructure. This latter form of dynamic testing is also referred to as hybrid simulation. In both cases, the test system consisting of the physical test-piece, the actuators and sensors, controls, and other computations, constitutes a dynamic system that is different from the structure whose behavior is the focus of the test. It is therefore of interest to ask if there are trajectories of the test system that are compatible with desired trajectories of the structure tested. In this paper, we formulate this problem of finding compatible trajectories, as a nonlinear least-squares problem, and propose optimization strategies. We discuss the trajectory computation with two examples, seismic testing with prescribed ground motion, and hybrid simulation with a shaketable as the transfer system.
机译:动态测试通常用于研究地震荷载作用下结构的响应。此类测试可以通过规定的输入(例如地震地面运动)来执行,也可以使用在环计算来进行,其中将物理子结构与虚拟子结构进行交互。动态测试的后一种形式也称为混合仿真。在这两种情况下,由物理测试件,致动器和传感器,控件以及其他计算组成的测试系统构成了一个动态系统,该动态系统不同于其行为是测试重点的结构。因此,感兴趣的是询问测试系统的轨迹是否与被测结构的期望轨迹兼容。在本文中,我们将寻找相容轨迹的问题公式化为非线性最小二乘问题,并提出优化策略。我们以两个示例讨论了轨迹计算,一个是具有规定地面运动的地震测试,另一个是带有振动台作为传输系统的混合仿真。

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