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首页> 外文期刊>Journal of vibration and control: JVC >Implementation and verification of real-time hybrid simulation (RTHS) using a shake table for research and education
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Implementation and verification of real-time hybrid simulation (RTHS) using a shake table for research and education

机译:使用摇表进行研究和教育的实时混合仿真(RTHS)的实施和验证

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摘要

In this study, as a state of the art testing method, real-time hybrid simulation (RTHS) is implemented and verified with a shake table for education and research. As an application example, the dynamic behavior of a tuned liquid damper (TLD)-structure system is investigated. RTHS is a practical and economical experimental technique which complements the strengths of computer simulation with physical testing. It separates the test structure into two substructures where part of the structure for which a reliable analytical model is not available is tested physically (experimental substructure) and coupled together with the analytical model of the remaining structure (analytical substructure). The implementation of RTHS involves challenges in accurate control of the experimental substructure as well as the synchronization of the signals. The details of the hardware and the software developed and the steps taken to improve the controller are discussed in this paper so that the implementation of RTHS is properly introduced. The accuracy has been verified using tracking indicators as well as using the response obtained from a spring-mass oscillator and TLD system. The shake table used in this study is available in over 100 universities around the world. In this paper, the implementation of RTHS is provided with sufficient details to enable easy introduction of this testing method wherever a similar shake table is available. This additional functionality will not only provide a new research tool, but it will also facilitate classroom demonstrations to improve how students understand new concepts in structural dynamics and earthquake engineering.
机译:在这项研究中,作为一种最新的测试方法,实施了实时混合仿真(RTHS)并通过摇表进行了验证,以进行教育和研究。作为一个应用示例,研究了调谐液体阻尼器(TLD)结构系统的动态行为。 RTHS是一种实用且经济的实验技术,可通过物理测试补充计算机仿真的优势。它将测试结构分为两个子结构,对其中无法使用可靠分析模型的结构的一部分进行物理测试(实验子结构),并将其与其余结构的分析模型(分析子结构)耦合在一起。 RTHS的实施涉及精确控制实验子结构以及信号同步方面的挑战。本文讨论了硬件和软件开发的细节,以及改进控制器的步骤,以便正确介绍RTHS的实现。使用跟踪指示器以及从弹簧质量振荡器和TLD系统获得的响应已验证了准确性。这项研究中使用的摇表可以在全球100所大学中使用。在本文中,为RTHS的实施提供了足够的详细信息,以便在有类似摇床的地方都可以轻松介绍该测试方法。此附加功能不仅将提供一种新的研究工具,还将有助于课堂演示,以提高学生对结构动力学和地震工程学新概念的理解。

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