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Parametric identification of nonlinear devices for seismic protection using soft computing techniques

机译:使用软计算技术进行地震保护非线性装置的参数识别

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Passive devices for vibration control are widely adopted in earthquake engineering for mitigation of seismic effects obtaining an efficient, robust and not expensive structural protection. They are largely used in the seismic protection of industrial machines, technical equipment, buildings, bridges and others more as reliable and affordable solutions. Moreover their performances are extremely sensitive to their dynamic mechanical behavior; a reliable identification of their mechanical behavior is therefore of key importance, despite the current lack of accurate and simple standard procedures to identify parameters and models for those devices. In this work, a new procedure for the dynamic identification of passive devices is described, through standard laboratory dynamic tests and the use of evolutionary algorithms. This procedure allows to find proper mechanical law and parameters to use for an accurate structural analysis and earthquake-resistant structure design. The procedure uses standard pre-qualification and quality-control tests, and consists in the minimization of the integral measure of the difference between mathematic and experimental applied force to the device under an imposed displacement time history. Due to the amount of corruption source of the experimental data and to the deep non linear nature of the problem, the use of evolutive algorithms is the main way to solve hard numerical task in an efficient way. The proposed procedure is applicable to a wide range of mathematical expressions because of its inherent stability and low computational cost, and allows comparing different mechanical laws by ranking their agreement with experimental data. Results are obtained for different experimentally tested devices, that are viscous dampers and seismic isolators, and are reported in order to demonstrate the efficiency of the proposed strategy.
机译:用于振动控制的无源装置在地震工程中广泛采用,以减轻地震效应获得高效,坚固且不昂贵的结构保护。它们主要用于工业机器,技术设备,建筑,桥梁等地震保护,更像可靠和实惠的解决方案。此外,它们的性能对它们的动态力学行为非常敏感;因此,尽管目前缺乏准确和简单的标准程序来识别这些设备的参数和模型,但它们的机械行为的可靠识别是重要的重要性。在这项工作中,通过标准实验室动态测试和使用进化算法描述了一种新的动态识别动态识别的新程序。该程序允许寻找适当的机械定律和参数用于准确的结构分析和抗震结构设计。该程序使用标准的验证性和质量控制测试,并包括在施加的位移时间历史下对装置的数学和实验施加力之间的数量差的积分度量。由于实验数据的腐败来源和对问题的深度非线性性质,使用演化算法是以有效的方式解决硬数字任务的主要方式。所提出的程序适用于各种数学表达式,因为其固有的稳定性和低计算成本,并且通过与实验数据进行协议来进行比较不同的机械法。结果是针对不同的实验测试装置获得,即粘性阻尼器和地震隔离器,并报告以证明所提出的策略的效率。

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