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THE STUDY OF PERFORMANCE ON BASE-ISOLATED DESIGN PARAMETERS THROUGH ENTROPY-BASED CLASSIFICATION

机译:通过基于熵的分类研究基础 - 隔离设计参数的性能研究

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Properly designed base isolation devices can effectively improve the responses of isolated structures during earthquake excitations. Strategies of optimal designs on base isolation systems are usually achieved through procedures with multiple adjustments of system parameters based on observations of system responses. However, it is time-consuming if (1) initial design parameters are not properly selected, such as insensitive or out of range; or (2) different earthquakes are considered for the excitations of a base isolation system. Hence, if the ranges of inputs (design parameters) could be reasonably estimated through concise techniques to obtain suitable outputs (structural responses), then, the computational efforts could be reduced. Entropy-based classification (EBC) method is applied to achieve this objective. A case study of base-isolated machinery located at Central Science Park in Taiwan area is presented to narrow down the ranges of parameters. Results are successfully attained to reduce the structural responses of a precision machinery system and rational outcomes are drawn.
机译:适当设计的底座隔离装置可以有效地改善地震激发期间隔离结构的响应。基于系统响应的观察,通常通过多次调整系统参数的程序来实现基础隔离系统上最佳设计的策略。然而,如果(1)未正确选择(1)初始设计参数,则耗时是耗时的,例如不敏感或超出范围;或(2)考虑不同地震的基础隔离系统的激励。因此,如果通过简洁的技术可以合理地估计输入(设计参数)以获得合适的输出(结构响应),则可以减少计算工作。基于熵的分类(EBC)方法应用于实现此目标。在台湾地区位于台湾中心科技园的基地机械案例,缩小了参数范围。结果成功实现以减少精密机械系统的结构响应,并绘制理性结果。

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