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Bistable oscillator dynamics driven by nonwhite noise.

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TLDR
An approximate, nonlinear Fokker-Planck-type equation is obtained which offers an improved model for two-dimensional nonequilibrium, bistable flows driven by exponentially correlated Gaussian noise and accurately predicts the renormalization of the phase-space statistical densities P(x,v) with correlation time.
Abstract
We obtain here an approximate, nonlinear Fokker-Planck-type equation which offers an improved model for two-dimensional nonequilibrium, bistable flows driven by exponentially correlated Gaussian noise. The new model accurately predicts the renormalization of the phase-space statistical densities P(x,v) with correlation time. The theory is tested for accuracy by both analog electronic and digital simulations of a damped oscillator with a bistable potential, driven by additive, colored noise. For large noise strengths, the improved theoretical scheme is applicable for small noise correlation times tau, but becomes increasingly better for small noise strengths where its accuracy extends even tolarge noise correlation times. The crossover to overdamped motion is also discussed.

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Journal ArticleDOI

Transduction of a bistable inductive generator driven by white and exponentially correlated Gaussian noise

TL;DR: In this article, the response of an inductive power generator with a bistable symmetric potential to stationary random environmental excitations is investigated, and the expected value of the generator's output power is independent of the potential shape.
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Analogue studies of nonlinear systems

TL;DR: In this article, the design of analogue electronic experiments to investigate phenomena in nonlinear dynamics, especially stochastic phenomena, is described in practical terms and the advantages and disadvantages of this approach, in comparison to more conventional digital methods, are discussed.
Journal ArticleDOI

Colored noise driven systems with inertia

TL;DR: In this article, a unified colored noise approximation (UCNA) was proposed for colored Gaussian noise driven nonlinear systems with inertia, which replaces a three-dimensional Markovian process by a reduced, two-dimensional MMD with new drift and diffusion coefficients.
Journal ArticleDOI

Logical stochastic resonance in triple-well potential systems driven by colored noise

TL;DR: It is shown that LSR can be successfully induced by additive or multiplicative Gaussian colored noise in some cases and the flexible and reliable logic behavior can be yielded for a = 0 due to the fact that the multiplicativeGaussiancolored noise strongly affects the shape of the potential function.
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For large noise strengths, the improved theoretical scheme is applicable for small noise correlation times tau, but becomes increasingly better for small noise strengths where its accuracy extends even tolarge noise correlation times.