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首页> 外文期刊>Journal of structural engineering >Real-Time Hybrid Simulation Using Shake Tables and Dynamic Actuators
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Real-Time Hybrid Simulation Using Shake Tables and Dynamic Actuators

机译:使用振动台和动态执行器的实时混合仿真

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摘要

The development and implementation of the real-time hybrid simulation (RTHS), a seismic response simulation method with a combination of numerical computation and physical specimens excited by shake tables and auxiliary actuators, are presented. The structure to be simulated is divided into one or more experimental and computational substructures. The loadings generated by the seismic excitations at the interfaces between the experimental and computational substructures, in terms of accelerations and forces, are imposed by shake tables and actuators in a step-by-step manner at a real-time rate. The measured displacement and velocity responses of the experimental substructure are fed back to determine the loading commands of the next time step. The unique aspect of the aforementioned hybrid simulation method is the versatile implementation of inertia forces and a force-based substructuring. The general formulation of RTHS enables this hybrid simulation method being executed as real-time pseudodynamic (PSD) testing, dynamic testing, and a combination of both, depending on the availability of the laboratory testing equipment and their capacity. The derivation of the general formulation and the corresponding testing system are presented in this paper. Numerical simulation and physical experiment were conducted on the RTHS of a three-story structural model. Simulation and experimental results verify the concept of the proposed general formulation of RTHS and the feasibility of the developed corresponding controller platform.
机译:提出了实时混合仿真(RTHS)的开发与实现,它是一种将数值计算与振动台和辅助执行器激励的物理样本相结合的地震响应仿真方法。要模拟的结构分为一个或多个实验和计算子结构。在振动和加速度方面,由地震激发在实验和计算子结构之间的界面上产生的载荷,是由振动台和执行器以逐步的方式,以实时速率逐步施加的。实验子结构的测量位移和速度响应被反馈以确定下一个时间步的加载命令。前述混合仿真方法的独特方面是惯性力和基于力的子结构的通用实现。 RTHS的一般公式使这种混合仿真方法可以作为实时伪动态(PSD)测试,动态测试以及两者的组合来执行,具体取决于实验室测试设备的可用性及其能力。本文介绍了一般公式的推导和相应的测试系统。对三层结构模型的RTHS进行了数值模拟和物理实验。仿真和实验结果验证了提出的RTHS通用公式的概念以及开发相应控制器平台的可行性。

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