首页> 外文会议>2AESE 2007;International Conference on Advances in Experimental Structural Engineers >REAL-TIME HYBRID TESTING USING THE UNCONDITIONALLY STABLE EXPLICIT CR INTEGRATION ALGORITHM
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REAL-TIME HYBRID TESTING USING THE UNCONDITIONALLY STABLE EXPLICIT CR INTEGRATION ALGORITHM

机译:使用无条件稳定的显式CR集成算法进行实时混合测试

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Real-time hybrid testing is an experimental technique that combines experimental testing and numerical simulation, and therefore provides a viable alternative for the dynamic testing of structural systems. In real-time hybrid testing an integration algorithm is used to compute command displacements for the servo-hydraulic actuator that are based on feedback restoring forces. Explicit integration algorithms are usually preferred over implicit algorithms since they require no iteration. However, the time step size for an explicit integration algorithm can be extremely small in order to avoid a numerical stability. This paper describes the application of an unconditionally stable explicit integration algorithm for real-time hybrid testing. The stability characteristics of the integration algorithm for response determination of linear and non-linear structures are illustrated using control theory, and the implementation of the algorithm for use in real-time hybrid testing is presented. Results from a test of a single story moment resisting frame with a passive elastomeric damper subjected to earthquake ground motion are presented to illustrate the use of the algorithm in real-time hybrid testing.
机译:实时混合测试是一种结合了实验测试和数值模拟的实验技术,因此为结构系统的动态测试提供了可行的替代方法。在实时混合测试中,基于反馈恢复力,集成算法用于计算伺服液压执行器的指令位移。显式集成算法通常比隐式算法更可取,因为它们不需要迭代。但是,为了避免数值稳定性,显式积分算法的时间步长可能会非常小。本文介绍了无条件稳定的显式集成算法在实时混合测试中的应用。利用控制理论说明了用于线性和非线性结构响应确定的集成算法的稳定性特征,并提出了用于实时混合测试的算法的实现。给出了使用被动弹性阻尼器进行地震地面运动的单层抗力矩框架测试结果,以说明该算法在实时混合测试中的使用。

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