Performance-based active controller design for nonlinear structures using modified black hole optimization

Author:

Yaghoobi Saber1,Fadali M Sami1,Pekcan Gokhan2ORCID

Affiliation:

1. Department of Electrical and Biomedical Engineering, University of Nevada, Reno, NV, USA

2. Department of Civil and Environmental Engineering, University of Nevada, Reno, NV, USA

Abstract

This paper presents a novel approach that facilitates the design of active controllers to mitigate seismically induced damage in structural systems. The proposed method is based on stochastic Modified Black Hole optimization algorithm. Two traditional controllers, namely Proportional-Integral-Derivative (PID) and Linear–Quadratic Gaussian (LQG) controllers were designed, and their performance was demonstrated on a benchmark 20-story steel-framed building. Evaluation criteria were defined to satisfy constraints on various response quantities, including drift, base shear, ductility, residual story drift, and control force. The constraint limits were defined in view of performance-based design requirements for the benchmark structure. The performance of the controllers was contrasted with that of traditional LQG, and significant reductions of all response quantities were achieved for design-level earthquakes.

Funder

National Science Foundation

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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