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Evaluation of a real-time hybrid simulation system for performance evaluation of structures with rate dependent devices subjected to seismic loading

机译:实时混合仿真系统的评估,用于评估受地震载荷影响的具有速率相关装置的结构的性能

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Real-time hybrid simulation is a viable experiment technique to evaluate the performance of structural systems subjected to earthquake loads. This paper presents details of the real-time hybrid simulation system developed at Lehigh University, including the hydraulic actuators, the IT control architecture, an integration algorithm and actuator delay compensation. An explicit integration algorithm provides a robust and accurate solution to the equations of motion while an adaptive inverse compensation method ensures the accurate application of the command displacements to experimental substructure(s) by servo-hydraulic actuators. Experiments of a steel moment resisting frame with magneto-rheological fluid dampers in passive-on mode were conducted using the real-time hybrid simulation system to evaluate the ability for the simulation method to evaluate the nonlinear seismic response of steel frame systems with dampers that are intended to enhance the response of the structure. The comparison with numerical simulation results demonstrates that the real-time hybrid simulation system produces accurate and reliable experimental results and therefore shows great potential for structural performance evaluation in earthauake engineering research.
机译:实时混合仿真是一种可行的实验技术,可以评估承受地震载荷的结构系统的性能。本文介绍了利哈伊大学开发的实时混合仿真系统的详细信息,包括液压执行器,IT控制体系结构,集成算法和执行器延迟补偿。显式积分算法为运动方程提供了鲁棒且准确的解决方案,而自适应逆补偿方法则确保了伺服液压执行机构将命令位移准确地应用于实验性子结构。使用实时混合仿真系统,对具有磁流变流体阻尼器的钢制抗弯框架进行了被动导通模式的实验,以评估该仿真方法评估具有阻尼器的钢制框架系统的非线性地震响应的能力。旨在增强结构的响应。与数值模拟结果的比较表明,实时混合仿真系统可产生准确可靠的实验结果,因此在地震工程研究中具有巨大的结构性能评估潜力。

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