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Model-based predicting and correcting algorithms for substructure online hybrid tests

机译:基于模型的子结构在线混合测试预测与校正算法

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摘要

A set of algorithms combined with a substructure technique is proposed for an online hybrid test framework, in which the substructures are encapsulated by a standard interface that implements displacements and forces at the common substructure boundaries. A coordinator equipped with the proposed algorithms is designed to achieve boundary compatibility and equilibrium, thereby endowing the substructures the ability to behave as one piece. A model-based predictor and corrector, and a noniterative procedure, characterize the set of algorithms. The coordinator solves the dynamics of the entire structure and updates the static boundary state simultaneously by a quasi-Newton procedure, which gradually formulates the condensed stiffness matrix associated with corresponding degrees of freedom. With the condensed stiffness matrix and dynamic information, a condensed equation of motion is derived and then solved by a typical time integration algorithm. Three strategies for updating the condensed stiffness matrix are incorporated into the proposed algorithms. Each adopts different stiffness matrix during the predicting and correcting stage. These algorithms are validated by two numerical substructure simulations and a hybrid test. The effectiveness and feasibility are fully demonstrated.
机译:针对在线混合测试框架,提出了一套与子结构技术相结合的算法,其中子结构由标准接口封装,该接口在公共子结构边界处实现位移和力。设计一种配备了所提出算法的协调器,以实现边界兼容性和平衡,从而使子结构具有整体表现的能力。基于模型的预测器和校正器以及非迭代过程可表征算法集。协调器通过拟牛顿法解决了整个结构的动力学问题,同时更新了静态边界状态,该过程逐步制定了与相应自由度相关的压缩刚度矩阵。利用压缩的刚度矩阵和动态信息,可以导出压缩的运动方程,然后通过典型的时间积分算法进行求解。将三种更新凝聚刚度矩阵的策略纳入了提出的算法。在预测和校正阶段,每个采用不同的刚度矩阵。这些算法通过两个数值子结构仿真和一个混合测试得到了验证。有效性和可行性得到充分证明。

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