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Impact of support stiffness on the performance of negative stiffness dampers for vibration control of stay cables

机译:支撑刚度对振动控制负极刚度阻尼器性能的影响

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摘要

Bridge stay cables are susceptible to dynamic excitations due to their low intrinsic damping and lateral stiffness. Installation of transverse passive dampers near the cable-deck anchorage on a rigid/flexible support is one of the practical measures to mitigate cable vibrations. The limited performance of conventional positive stiffness dampers (PSDs) has led to the emergence of negative stiffness dampers (NSDs). Recent research has found that unlike PSD, NSD would perform more effectively in the presence of a flexible support. In this study, the impact of damper support stiffness on the NSD control performance is investigated. Based on an existing analytical design formula for achieving a target damping ratio, the design of NSD for a given support condition, the design of damper support for a given NSD, and the design of the entire NSD-support system are addressed. An optimization algorithm is proposed to identify the optimum combination of NSD parameters and damper support stiffness. The NSD design is refined through numerical iterations to minimize the impact of assumptions made in developing the analytical formulation. A numerical example is presented for a 325 m long stay cable equipped with an optimized NSD and subjected to harmonic excitation. The optimized NSD performance is compared with an optimal active linear-quadratic regulator (LQR) controller. Results show that the presence of flexible support leads to a cost-efficient NSD with smaller size and lower level of negative stiffness. Moreover, the optimized NSD is shown to be as effective as LQR to suppress cable vibrations.
机译:由于它们的内在阻尼和横向刚度低,桥式延伸电缆容易受到动态激发的影响。在刚性/柔软载体上的电缆甲板锚固附近安装横向无源阻尼器是减轻电缆振动的实用措施之一。传统的正刚度阻尼器(PSD)的有限性能导致了负刚度阻尼器(NSD)的出现。最近的研究发现,与PSD不同,NSD在柔性支持的情况下会更有效地执行。在本研究中,研究了阻尼器支持刚度对NSD控制性能的影响。基于用于实现目标阻尼比的现有分析设计公式,对于给定的支撑条件,NSD的设计,针对给定NSD的阻尼器支持的设计,以及整个NSD支持系统的设计。提出了一种优化算法来识别NSD参数和阻尼器支撑刚度的最佳组合。 NSD设计通过数值迭代精制,以最大限度地减少在开发分析制剂方面采取的假设的影响。提供了一个配备有优化的NSD的325米长的支架电缆并经受谐波激发的数值例子。将优化的NSD性能与最佳有源线性 - 二次调节器(LQR)控制器进行比较。结果表明,柔性支撑的存在导致具有较小尺寸和较低的负刚度水平的成本效率的NSD。此外,优化的NSD被示出为LQR的有效以抑制电缆振动。

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