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Resettable-inertance inerter: A semiactive control device for energy absorption

机译:可重设惯性的惯性装置:一种用于能量吸收的半主动控制装置

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Semiactive control systems are based on formerly passive mechanical devices whose characteristics are adjusted in real time by active means. They can be classified into variable-damping dampers, variable-stiffness springs, and variable-inertance inerters. Similarly to the case of "variable-stiffness," two possibilities are devised for inerters: "independently-variable inertance," where inertance can increase or decrease continuously at any instant of time, and "resettable-inertance," where it can increase only at instants where relative velocity is zero. By duality with resettable-stiffness springs, a resettable-inertance inerter (RII) is composed of an inerter that can suddenly be disconnected from the vibrating system and blocked in order to eliminate kinetic energy. Studies on "independently-variable inertance" have been carried out recently, but there are still no studies on "resettable inertance." This paper presents an analytical numerical study on RII, for an energy-based control law, through the mathematical model of a mechanical implementation. By simulation of a numerical example that considers a SDOF system with three different devices, the performance is demonstrated for energy absorption and vibration reduction. Moreover, closed-form expressions for the equivalent-linear inertance, stiffness, and damping are found for the resettable devices and validated through the numerical example. Main conclusion is that RII adds equivalent damping without dynamically stiffening the structure. Besides, the absorbed energy can be dissipated and/or harvested in time intervals in which the RII is uncoupled from the structure.
机译:半主动控制系统基于以前的被动机械设备,其主动特性可实时调整其特性。它们可以分为可变阻尼阻尼器,可变刚度弹簧和可变惯性惰性器。与“可变刚度”的情况类似,为惰性气体设计了两种可能性:“独立可变惯性”,其中惯性可以在任何时刻连续增加或减少;以及“可复位惯性”,其中惯性仅可以增加在相对速度为零的瞬间。通过与可复位刚度弹簧双重作用,可复位惯性惯性器(RII)由一个惯性器组成,该惯性器可突然与振动系统断开连接并被阻塞,以消除动能。最近已经对“独立变量惯性”进行了研究,但是仍然没有关于“可复位惯性”的研究。本文通过机械实现的数学模型,针对基于能量的控制律,对RII进行了分析数值研究。通过对考虑具有三个不同设备的SDOF系统的数值示例进行仿真,证明了该性能可降低能量吸收和振动。此外,还为可重置设备找到了等效线性惯量,刚度和阻尼的闭式表达式,并通过数值示例进行了验证。主要结论是RII增加了等效的阻尼而不动态地使结构变硬。此外,所吸收的能量可以在其中RII与结构解耦的时间间隔内消散和/或收集。

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