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首页> 外文期刊>Journal of Mechanical Science and Technology >Stability analysis of real-time hybrid simulation in consideration of time delays of actuator and shake table using delay differential equations
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Stability analysis of real-time hybrid simulation in consideration of time delays of actuator and shake table using delay differential equations

机译:考虑延迟微分方程的执行器和摇动台时滞的实时混合模拟的稳定性分析

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摘要

Real-time hybrid simulation evaluates the response of a structure in real time. In this study, a building with multi-story structure is divided into numerical and experimental substructures, and the vibration behavior of the experimental story is studied among the real-time simulation of the other stories. For applying the effect of static and inertial forces produced by the other stories to the experimental story, an electrohydraulic actuator and a shake table are used, respectively. The dynamics of the electrohydraulic actuator and the shake table can be estimated entirely by time delays, and these delays in the loop of simulation can reduce accuracy and cause system instability. Therefore, a delayed differential equation is used to determine the critical time delays depending on the system parameters. Results of simulation show the effect of non-dimensional parameters and time delays on the stability margin of hybrid simulation.
机译:实时混合模拟实时评估结构的响应。 在这项研究中,具有多层结构的建筑物分为数值和实验的子结构,并且在其他故事的实时模拟中研究了实验故事的振动行为。 为了应用由其他故事产生的静态和惯性力的效果,分别使用电液致动器和摇架。 可以完全按时间延迟估计电液执行器和摇动台的动态,并且仿真环路中的这些延迟可以降低精度并导致系统不稳定性。 因此,延迟微分方程用于根据系统参数确定临界时间延迟。 仿真结果表明了非尺寸参数和时间延迟对混合模拟稳定裕度的影响。

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