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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Genetic Algorithm Based Optimum Semi-Active Control of Building Frames Using Limited Number of Magneto-Rheological Dampers and Sensors
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Genetic Algorithm Based Optimum Semi-Active Control of Building Frames Using Limited Number of Magneto-Rheological Dampers and Sensors

机译:基于磁力流变阻尼器和传感器的建筑帧的基于遗传算法的基于最佳半主动控制

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摘要

Optimum semi-active control with a limited number of magneto-rheological (MR) dampers and measurement sensors has certain requirements. Most important of them is the accurate estimation of control forces developed in the MR dampers from the observations made in the structure. Therefore, the observation strategy should form an integral part of the optimization problem. The existing literature on the subject does not address this issue properly. The paper presents a computationally efficient optimization scheme for semi-active control of partially observed building frames using a limited number of MR dampers and sensors for earthquakes. The control scheme duly incorporates the locations of measurement sensors as variables into the genetic algorithm (GA) based optimization problem. A ten-storied building frame is taken as an illustrative example. The optimum control strategy utilizes two well-known control laws, namely, the linear quadratic Gaussian (LQG) with clipped optimal control and the bang-bang control to find the time histories of voltage to be applied to the MR dampers. The results of the numerical study show that the proposed scheme of sensor placement provides the optimum reduction of response with more computational efficiency. Second, optimal locations of sensors vary with the response quantities to be controlled, the nature of earthquake, and the control algorithm. Third, optimal locations of MR dampers are invariant of the response quantities to be controlled and the nature of earthquake.
机译:具有有限数量的磁流变(MR)阻尼器和测量传感器的最佳半主动控制具有一定的要求。它们中最重要的是从结构中制造的观察结果中,对MR阻尼器中产生的控制力的准确估计。因此,观察策略应形成优化问题的组成部分。对象的现有文献没有正确解决这个问题。本文介绍了使用有限数量的MR阻尼器和地震传感器的部分观察到的构建帧的半主动控制的计算有效优化方案。控制方案正式结合了测量传感器的位置作为基于遗传算法(GA)优化问题的变量。一个十存储的建筑物框架作为说明性示例。最佳控制策略利用了两个众所周知的控制法,即具有剪裁最佳控制和BANG-BANG控制的线性二次高斯(LQG),以找到要应用于MR阻尼器的电压的时间历史。数值研究的结果表明,所提出的传感器放置方案提供了具有更多计算效率的响应的最佳降低。其次,传感器的最佳位置随着响应量而变化,地震的性质和控制算法。第三,MR阻尼器的最佳位置是不变的响应量和地震的性质。

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