[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Ji et al., 2009 - Google Patents

Multi-modal vibration control using a synchronized switch based on a displacement switching threshold

Ji et al., 2009

View PDF
Document ID
4906370899414242359
Author
Ji H
Qiu J
Zhu K
Chen Y
Badel A
Publication year
Publication venue
Smart Materials and Structures

External Links

Snippet

A new semi-active method for multi-mode vibration control using the nonlinear synchronized switch damping (SSD) approach based on a displacement switching threshold is proposed in this paper. Several extensions of the SSD approach, including SSDI (SSD on inductance) …
Continue reading at www.academia.edu (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Ji et al. Multi-modal vibration control using a synchronized switch based on a displacement switching threshold
Gripp et al. Vibration and noise control using shunted piezoelectric transducers: A review
Ji et al. Semi-active vibration control of a composite beam using an adaptive SSDV approach
Liang et al. Electro-mechanical impedance modeling of active material systems
Ji et al. Semi-active vibration control of a composite beam by adaptive synchronized switching on voltage sources based on LMS algorithm
Ji et al. Semi-active vibration control based on unsymmetrical synchronized switch damping: Analysis and experimental validation of control performance
Ji et al. Two-mode vibration control of a beam using nonlinear synchronized switching damping based on the maximization of converted energy
Petit et al. A broadband semi passive piezoelectric technique for structural damping
Clark Semi-active vibration control with piezoelectric materials as variable-stiffness actuators
Shields et al. Control of sound radiation from a plate into an acoustic cavity using active piezoelectric-damping composites
Bao et al. Elastic wave manipulation in piezoelectric beam meta-structure using electronic negative capacitance dual-adjacent/staggered connections
Harari et al. New semi-active multi-modal vibration control using piezoceramic components
CN103195863B (en) Intelligent control system for mechanical structure damping
Guyomar et al. Sound wave transmission reduction through a plate using piezoelectric synchronized switch damping technique
Li et al. Structural vibration control by synchronized switch damping energy transfer
Qureshi et al. Piezoelectric shunt damping by synchronized switching on negative capacitance and adaptive voltage sources
Ji et al. Semi-active vibration control based on synchronously switched piezoelectric actuators
Liang et al. Enhancement of piezoelectric energy harvesting using ABH structural tailoring
Cheng et al. Semi-active vibration suppression by a novel synchronized switch circuit with negative capacitance
Shen et al. A semi-passive vibration damping system powered by harvested energy
Qureshi et al. A low frequency vibration control by synchronized switching on negative capacitance and voltage sources
Jayachandran et al. Piezoelectrically driven speakers for active aircraft interior noise suppression
Kozień et al. Choosing of Optimal Voltage Amplitude of Four Pairs Square Piezoelectric Elements for Minimization οf Acoustic Radiation of Vibrating Plate
Ji et al. Vibration control of a composite beam by an adaptive semi-active method based on LMS algorithm
Ji et al. Semi-active noise suppression base on SSD technique using piezoelectric elements