Dual-Functional Energy-Harvesting and Vibration Control: Electromagnetic Resonant Shunt Series Tuned Mass Dampers

Author:

Zuo Lei1,Cui Wen2

Affiliation:

1. e-mail:

2. Department of Mechanical Engineering, State University of New York at Stony Brook, Stony Brook, NY 11794

Abstract

This paper proposes a novel retrofittable approach for dual-functional energy-harvesting and robust vibration control by integrating the tuned mass damper (TMD) and electromagnetic shunted resonant damping. The viscous dissipative element between the TMD and primary system is replaced by an electromagnetic transducer shunted with a resonant RLC circuit. An efficient gradient based numeric method is presented for the parameter optimization in the control framework for vibration suppression and energy harvesting. A case study is performed based on the Taipei 101 TMD. It is found that by tuning the TMD resonance and circuit resonance close to that of the primary structure, the electromagnetic resonant-shunt TMD achieves the enhanced effectiveness and robustness of double-mass series TMDs, without suffering from the significantly amplified motion stroke. It is also observed that the parameters and performances optimized for vibration suppression are close to those optimized for energy harvesting, and the performance is not sensitive to the resistance of the charging circuit or electrical load.

Publisher

ASME International

Subject

General Engineering

Reference22 articles.

1. Mitigation of Motions of Tall Buildings With Specific Examples of Recent Applications;Wind Struct.,1999

2. Passive Structural Control of Offshore Wind Turbines;Wind Energ.,2011

3. Historical View of Long-Span Bridge Aerodynamics;J. Wind Eng. Ind. Aerodyn.,2003

4. Tang, X., and Zuo, L., 2010, “Regenerative Semi-Active Control of Tall Building Vibration With Series TMDs,” Proceeding of America Control Conference, Baltimore, MD, June 30–July 2.

5. Tang, X., and Zuo, L., 2012, “Simulation and Experiment Validation of Simultaneous Vibration Control and Energy Harvesting From Buildings Via Tuned Mass Dampers,” Proceeding of America Control Conference, San Francisco, CA, June 29–July 1.

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