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A Comparison between a New Semi-Active Tuned Mass Damper and an Active Tuned Mass Damper

机译:新型半主动调谐质量阻尼器和主动调谐质量阻尼器之间的比较

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Reducing structural vibrations is one of the main concerns in structural control. Different control techniques are proposed for this purpose. Among the variety of control methods, semi-active ones are very attractive and beneficial in that they require minimum amount of energy but they are very capable to reduce structural displacements. In this paper, the behavior of a structure equipped with a new type of semi-active tuned mass damper called SADA-TMD is compared to the behavior of a structure equipped with active tuned mass damper (ATMD). SADA-TMD is a TMD equipped with semi-active damper actuator (SADA). This device can absorb energy transferred to the ordinary TMD during earthquakes and use it like an actuator; it can also dampen any part of this absorbed energy. For the purpose of comparison a multi story building has been modeled numerically. The performance of SADA-TMD and ATMD is controlled by fuzzy logic controller (FLC). Advantages of employing SADA-TMD to reduce structural responses are shown through illustrations and numerical results. However, the results come from applying SADA-TMD can be compared to that of active tuned mass dampers (ATMD), because SADA-TMD is a semi-active device, the power requirements is significantly lower than those of ATMD. It is worth to be mentioned that because SADA-TMD can work on battery power, it is more reliable than ATMD during strong earthquakes; because the source of energy which is necessary for active actuator could be failed during those earthquakes.
机译:减少结构振动是结构控制的主要问题之一。为此目的提出了不同的控制技术。在各种控制方法中,半活性物质非常有吸引力和有益,因为它们需要最小的能量,但它们非常能够减少结构性位移。在本文中,将配备有新型半主动调谐质量阻尼器的结构的行为与配备有主动调谐质量阻尼器(ATMD)的结构的行为进行比较。 Sada-TMD是一个配备半主动阻尼器执行器(SADA)的TMD。该装置可以在地震期间吸收转移到普通TMD的能量,并将其类似于执行器;它还可以抑制这种吸收能量的任何部分。为了比较,多层建筑已经在数字上进行了建模。 SADA-TMD和ATMD的性能由模糊逻辑控制器(FLC)控制。通过插图和数值结果显示使用SADA-TMD来减少结构响应的优点。然而,结果来自申请SADA-TMD可以与主动调谐质量阻尼器(ATMD)相比,因为SADA-TMD是半主动装置,功率要求显着低于ATMD。值得提到的是,因为SADA-TMD可以在电池电量上工作,因此在强大的地震期间比ATMD更可靠;因为在那些地震期间,有源执行器所需的能量来源可能会发生故障。

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