We consider the problem of optimal control of vibrating structures and we analyse the solution provided by collocated semiactive decentralised damping devices. We mainly consider the H 1e criterion and we first study the case of constant dampers, showing that in the case of a single damper the performance is a quasi-convex function of friction so there is a single local minimum which is a global one. The case of multiple dampers does not exhibit this feature and time-expensive computations may be required. Secondly, we consider the case in which dampers may be tuned on line, and in particular the case in which they work in a switching on-off mode. We propose a state-switching feedback control strategy, which outperforms the constant dampin...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
The paper deals with the problem of optimal damping of vibrating structures by means of collocated d...
This paper is concerned with decentralised velocity feedback for the control of vibration on a flexi...
This article studies a semi-active control strategy applied to a vibration damping and to an energy ...
We present a new design strategy that makes it possible to synthesize decentralized output-feedback ...
The paper deals with the adaptive optimal semi-active control of the slender vibrating structures su...
We present a new design strategy that makes it possible to synthesize decentralized output-feedback ...
Gain switching is proven to be an effective technique for semiactive damping of vibrating structures...
In this paper we study the semi-active control of structural systems by means of variable stiffness ...
This thesis investigates algorithms that allow the tuning of multiple, single loop feedback controll...
In this work, a systematic strategy to design passive damping systems for structural vibration cont...
In this paper the semiactive vibration control of a single degree of freedom oscillator is considere...
<div>EACS 2016 Paper No. 118</div><div><br></div>Semi-active control systems provide an attractive s...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
The paper deals with the problem of optimal damping of vibrating structures by means of collocated d...
This paper is concerned with decentralised velocity feedback for the control of vibration on a flexi...
This article studies a semi-active control strategy applied to a vibration damping and to an energy ...
We present a new design strategy that makes it possible to synthesize decentralized output-feedback ...
The paper deals with the adaptive optimal semi-active control of the slender vibrating structures su...
We present a new design strategy that makes it possible to synthesize decentralized output-feedback ...
Gain switching is proven to be an effective technique for semiactive damping of vibrating structures...
In this paper we study the semi-active control of structural systems by means of variable stiffness ...
This thesis investigates algorithms that allow the tuning of multiple, single loop feedback controll...
In this work, a systematic strategy to design passive damping systems for structural vibration cont...
In this paper the semiactive vibration control of a single degree of freedom oscillator is considere...
<div>EACS 2016 Paper No. 118</div><div><br></div>Semi-active control systems provide an attractive s...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...
In this work, a new strategy to design passive energy dissipation systems for vibration control of l...