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Fuzzy control of piezoelectric friction dampers for seismic protection of smart base isolated buildings

机译:压电摩擦阻尼器的模糊控制,用于智能基础隔震建筑的地震防护

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摘要

This study proposes two fuzzy logic controllers (FLCs) for operating control force of piezoelectric friction dampers used for seismic protection of base-isolated buildings against various types of earthquake excitations. The first controller employs a hierarchic control strategy in which a higher-level supervisory controller operates a single sub-level FLC by modifying its input normalization factors in order to determine command voltage of the damper according to current level of ground motion. The second controller is a self organizing FLC that employs genetic algorithms in order to build a knowledge base for the fuzzy controller. Numerical simulations of a base-isolated building are conducted to evaluate the performance of the controllers. For comparison purposes, an optimal controller is also developed and considered in the simulations together with maximum passive operation of the friction damper. Results for several historical ground motions show that developed fuzzy logic controllers can effectively reduce isolation system deformations without the loss of potential advantages of seismic base isolation.
机译:这项研究提出了两个模糊逻辑控制器(FLC),用于压电摩擦阻尼器的操作控制力,该阻尼器用于基础隔震建筑的地震保护,以抵抗各种类型的地震激励。第一控制器采用分层控制策略,其中高层监控器通过修改其输入归一化因子来操作单个子级别FLC,以便根据地面运动的当前水平确定减震器的指令电压。第二个控制器是自组织FLC,它采用遗传算法来建立模糊控制器的知识库。进行了基础隔离建筑物的数值模拟,以评估控制器的性能。为了进行比较,还开发了一种最佳控制器,并在模拟中考虑了该控制器,并实现了摩擦阻尼器的最大被动运行。几次历史地震动的结果表明,开发的模糊逻辑控制器可以有效地减少隔震系统的变形,而又不损失地震基础隔震的潜在优势。

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