首页> 外文期刊>International journal of structural stability and dynamics >PREDICTIVE CONTROL AND SIGNAL ON NOISE REDUCTION FOR SEMI-ACTIVE HYDRAULIC DAMPER
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PREDICTIVE CONTROL AND SIGNAL ON NOISE REDUCTION FOR SEMI-ACTIVE HYDRAULIC DAMPER

机译:半主动液压阻尼器的减噪预测控制和信号

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摘要

In the implementation of active or semi-active control systems, it is necessary to process the measured signals because they are not perfect in reality. At present, the current energy-dissipating method for controlling semi-active dampers is flawed because of some restrictions on processing and measuring the signals. Thus, a detection methodology of signal control is proposed in this research based on the direction of structural motion; a velocity estimating calculator is developed by using the least-square polynomial regression. Comparison of the analytical results and experimental data confirms that the proposed calculator is effective in predicting when to switch the moving direction of a semi-active damper. It can detect when the direction of the structure motion reverses as well as when to compensate the poor influence on the performance of a semi-active damper caused by the delayed response. Additionally, the noise of displacement signal will not affect the phase difference of predictive signals.
机译:在实施主动或半主动控制系统时,有必要处理所测量的信号,因为它们实际上并不完美。当前,由于对信号的处理和测量的一些限制,目前用于控制半主动阻尼器的能量消耗方法是有缺陷的。因此,本研究提出了一种基于结构运动方向的信号控制检测方法。通过使用最小二乘多项式回归开发速度估算计算器。分析结果和实验数据的比较证实了所提出的计算器在预测何时切换半主动阻尼器的运动方向方面是有效的。它可以检测到结构运动的方向何时反转以及何时补偿由延迟响应引起的对半主动阻尼器性能的不良影响。另外,位移信号的噪声将不会影响预测信号的相位差。

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