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Modeling of low frequency dynamics of a smart system and its state feedback based active control
Abstract Major physical systems/structures suffer from unwanted vibrations. For efficient working of such systems, these vibrations have to be controlled. In this paper, mathematical modeling of anExpand
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Modeling and design of field programmable gate array based real time robust controller for active control of vibrating smart system
Abstract The current paper focuses on accurate mathematical modeling of a vibrating piezoelectric laminate cantilever beam theoretically as well as experimentally so as to obtain the best replicationExpand
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Active Vibration Control of a Smart Cantilever Beam on General Purpose Operating System
All mechanical systems suffer from undesirable vibrations during their operations. Their occurrence is uncontrollable as it depends on various factors. However, for efficient operation of the system,Expand
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Design and development of a model free robust controller for active control of dominant flexural modes of vibrations in a smart system
Abstract Real physical vibrating smart systems exhibit a lot of nonlinearities in their dynamics. Undesirable vibrations, particularly in the regions of first as well as second resonance, play a veryExpand
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Effects of Thyristor Controlled Series Capacitor (TCSC) on oscillations in tie-line power and area frequencies in an interconnected non-reheat thermal power system
This paper deals with automatic generation control of an interconnected thermal non-reheat power system in continuous mode by employing a Thyristor Controlled Series Capacitor (TCSC) in series withExpand
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Modeling and Control of Low Frequency Dynamics of a Smart System
TLDR
We present a classical PI controller to control the vibrations of a piezoelectric laminate flexible cantilever beam when excited by various signals. Expand
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Active vibration control of a smart cantilever beam at resonance: A comparison between conventional and Real Time Control
TLDR
In this paper, direct output feedback based active vibration control has been implemented on a smart cantilever beam at its resonant frequency using PZT (Lead Zirconate Titanate) sensors and actuators coupled with feedback algorithms. Expand
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Designing of Control Strategy for High Voltage Battery Isolation in an Electric Vehicles
TLDR
In recent year there are numerous developments ongoing in Electric Vehicle industries. Expand
Parametric modeling and FPGA based real time active vibration control of a piezoelectric laminate cantilever beam at resonance
The operational efficiency and life of mechanical systems/structures depends to a large extent on their vibration control. Continuously occurring vibrations on the systems can cause fatigue and theExpand
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