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首页> 外文期刊>Journal of structural engineering >Large-Scale Experimental Verification of Semiactive Control through Real-Time Hybrid Simulation1
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Large-Scale Experimental Verification of Semiactive Control through Real-Time Hybrid Simulation1

机译:通过实时混合仿真对半主动控制进行大规模实验验证1

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Magneto-rheological (MR) fluid dampers have been identified as a particularly promising type of semiactive control device for hazard mitigation in civil engineering structures. Large-scale experimental testing is important to verify the performance of MR fluid dampers for seismic protection of civil structures. Real-time hybrid testing, where only the critical components of the system are physically tested while the rest of the structure is simulated, can provide a cost-effective means for large-scale testing of semiactive controlled structures. This paper describes the real-time hybrid simulation experimental setup for multiple large-scale MR fluid dampers and demonstrates the capability at the University of Colorado at Boulder shared-use Fast Hybrid Test facility to conduct real-time hybrid testing within the Network for Earthquake Engineering Simulation.
机译:磁流变(MR)流体阻尼器已被认为是一种特别有希望的半主动控制设备,可用于减轻土木工程结构中的危险。大型实验测试对于验证MR流体阻尼器在民用建筑抗震保护中的性能非常重要。实时混合测试,其中仅对系统的关键组件进行物理测试,而其余结构进行了模拟,则可以为大规模测试半主动受控结构提供经济高效的方法。本文介绍了用于多个大型MR流体阻尼器的实时混合仿真实验装置,并演示了科罗拉多大学博尔德分校共享使用的快速混合测试设施在地震工程网络内进行实时混合测试的能力。模拟。

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