Comparison of classical and reliable controller performancesfor seismic response mitigation

IF 1.4 4区 工程技术 Q3 ENGINEERING, CIVIL
B. Kavyashree, S. Patil, V. S. Rao
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引用次数: 0

Abstract

Natural hazards like earthquakes, high winds, and tsunami are a threat all the time for multi-story structures. The environmental forces cannot be clogged but the structures can be prevented from these natural hazards by using protective systems. The structural control can be achieved by using protective systems like the passive, active, semi-active, and hybrid protective systems; but the semi-active protective system has gained importance because of its adaptability to the active systems and reliability of the passive systems. Therefore, a semi-active protective system for the earthquake forces has been adopted in this work. Magneto-Rheological (MR) damper is used in the structure as a semi-active protective system; which is connected to the current driver and proposed controller. The Proportional Integral Derivative (PID) controller and reliable PID controller are two proposed controllers, which will actuate the MR damper and the desired force is generated to mitigate the vibration of the structural response subjected to the earthquake. PID controller and reliable PID controller are designed and tuned using Ziegler-Nichols tuning technique along with the MR damper simulated in Simulink toolbox and MATLAB to obtain the reduced vibration in a three-story benchmark structure. The earthquake is considered to be uncertain; where the proposed control algorithm works well during the presence of earthquake; this paper considers robustness to provide satisfactory resilience against this uncertainty. In this work, two different earthquakes are considered like El-Centro and Northridge earthquakes for simulation with different controllers. In this paper performances of the structure with and without two controllers are compared and results are discussed.
经典和可靠的地震响应控制性能的比较
地震、大风和海啸等自然灾害一直是多层建筑的威胁。环境力不能被堵塞,但可以通过使用保护系统来防止结构受到这些自然灾害的影响。结构控制可以通过使用被动、主动、半主动和混合保护系统等保护系统来实现;但半主动保护系统由于其对主动系统的适应性和被动系统的可靠性而变得越来越重要。因此,本文采用了半主动地震防护系统。该结构采用磁流变阻尼器作为半主动保护系统;其连接到电流驱动器和所提出的控制器。比例-积分-微分(PID)控制器和可靠的PID控制器是两种提出的控制器,它们将驱动MR阻尼器,并产生所需的力来减轻结构在地震作用下的振动。利用Ziegler-Nichols调谐技术,结合Simulink工具箱和MATLAB中模拟的MR阻尼器,设计并调谐了PID控制器和可靠的PID控制器,以获得三层基准结构的减振效果。地震被认为是不确定的;其中所提出的控制算法在地震期间工作良好;本文考虑了鲁棒性,以提供令人满意的弹性来对抗这种不确定性。在这项工作中,考虑了两种不同的地震,如埃尔森特罗和北岭地震,用不同的控制器进行模拟。本文比较了带有和不带有两个控制器的结构的性能,并讨论了结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Earthquakes and Structures
Earthquakes and Structures ENGINEERING, CIVIL-ENGINEERING, GEOLOGICAL
CiteScore
2.90
自引率
20.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Earthquakes and Structures, An International Journal, focuses on the effects of earthquakes on civil engineering structures. The journal will serve as a powerful repository of technical information and will provide a highimpact publication platform for the global community of researchers in the traditional, as well as emerging, subdisciplines of the broader earthquake engineering field. Specifically, some of the major topics covered by the Journal include: .. characterization of strong ground motions, .. quantification of earthquake demand and structural capacity, .. design of earthquake resistant structures and foundations, .. experimental and computational methods, .. seismic regulations and building codes, .. seismic hazard assessment, .. seismic risk mitigation, .. site effects and soil-structure interaction, .. assessment, repair and strengthening of existing structures, including historic structures and monuments, and .. emerging technologies including passive control technologies, structural monitoring systems, and cyberinfrastructure tools for seismic data management, experimental applications, early warning and response
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