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Experiment of an ABS-type control strategy for semi-active friction isolation systems

机译:半主动摩擦隔离系统的ABS型控制策略实验

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摘要

Recent studies have discovered that a conventional passive isolation system may suffer from an excessive isolator displacement when subjected to a near-fault earthquake that usually has a long-period velocity pulse waveform. Semi-active isolation using variable friction dampers (VFD), which requires a suitable control law, may provide a solution to this problem. To control the VFD in a semi-active isolation system more efficiently, this paper investigates experimentally the possible use of a control law whose control logic is similar to that of the anti-lock braking systems (ABS) widely used in the automobile industry. This ABS-type controller has the advantages of being simple and easily implemented, because it only requires the measurement of the isolation-layer velocity and does not require system modeling for gain design. Most importantly, it does not interfere with the isolation period, which usually decides the isolation efficiency. In order to verify its feasibility and effectiveness, the ABS-type controller was implemented on a variable-friction isolation system whose slip force is regulated by an embedded piezoelectric actuator, and a seismic simulation test was conducted for this isolation system. The experimental results demonstrate that, as compared to a passive isolation system with various levels of added damping, the semi-active isolation system using the ABS-type controller has the better overall performance when both the far-field and the near-fault earthquakes with different PGA levels are considered.
机译:最近的研究发现,常规的被动隔离系统在遭受通常具有长周期速度脉冲波形的近断层地震时可能会遭受过多的隔离器位移。使用可变摩擦阻尼器(VFD)的半主动隔离需要适当的控制律,可以为该问题提供解决方案。为了更有效地控制半主动隔离系统中的VFD,本文通过实验研究了控制律的可能使用,该控制律的控制逻辑与汽车工业中广泛使用的防抱死制动系统(ABS)相似。这种ABS型控制器具有简单易用的优点,因为它只需要测量隔离层的速度,而无需为增益设计而进行系统建模。最重要的是,它不会干扰隔离时间,隔离时间通常决定隔离效率。为了验证其可行性和有效性,在可变摩擦隔离系统上实现了ABS型控制器,该系统的滑移力由嵌入式压电致动器调节,并对该隔离系统进行了地震模拟测试。实验结果表明,与具有不同附加阻尼等级的被动隔振系统相比,使用ABS型控制器的半主动隔振系统在远场地震和近断层地震时都具有更好的综合性能。考虑了不同的PGA水平。

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