Exact(23)
Functional faults that are only detectable, are rendered isolable through an active isolation approach.
Magnetic suspension isolator (MSI), as an active isolation actuator, has shown advantages including non-contact, high response frequency, high reliability and long life-span.
This paper is concerned with the active isolation of a system containing a distributed parameter isolator using absolute velocity feedback control.
The limits on the active isolation of stochastic vibrations are explored.
The behavior of a feedforward active isolation system subjected to actuator output constraints is investigated.
Active isolation control systems typically include an electromagnetic transducer to develop the required control forces.
Similar(37)
A new hybridization of two previously studied semi-active control rules regulates the damping in the semi-active isolation system.
In semi-active isolation systems, the inherent structural performance can be adjusted to deal with variation in the aerospace environment.
In principle, semi-active isolation systems can deliver the versatility, adaptability and higher performance of fully active systems for a fraction of the power consumption.
The semi-active isolation system with energy dissipating by friction force has been proved effective, and friction force is a natural mechanism of energy disssipation.
In order to alleviate this near-fault isolation problem, this paper investigates the possible use of a fuzzy-controlled semi-active isolation system, called a piezoelectric seismic isolation system (PSIS), whose seismic response is attenuated by a variable friction damper driven by an embedded piezoelectric actuator.
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