Entropy evolution and uncertainty estimation with dynamical systems
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Publication:296287
DOI10.3390/e16073605zbMath1338.37013OpenAlexW2090118902MaRDI QIDQ296287
Publication date: 15 June 2016
Published in: Entropy (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3390/e16073605
entropysecond law of thermodynamicsLorenz systemFisher information matrixself-organizationensemble predictionquasi-geostrophic flowreduced model approachshear instabilityuncertainty estimation
Applications of stochastic analysis (to PDEs, etc.) (60H30) Entropy and other invariants, isomorphism, classification in ergodic theory (37A35) Classical and relativistic thermodynamics (80A10) Dynamical systems and their relations with probability theory and stochastic processes (37A50)
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Cites Work
- Unnamed Item
- A Mathematical Theory of Communication
- Fact-checking Ziegler's maximum entropy production principle beyond the linear regime and towards steady states
- Predictability, uncertainty, and hyperbolicity in the ocean
- Entropy and entropy production: old misconceptions and new breakthroughs
- Free energy, value, and attractors
- A rigorous formalism of information transfer between dynamical system components. I. Discrete mapping
- On the (Boltzmann) entropy of non-equilibrium systems
- Local predictability and information flow in complex dynamical systems
- Uncertainty estimation and prediction for interdisciplinary ocean dynamics
- On the definition of entropy production, via examples
- Information Theory and Statistical Mechanics
- On entropy production for controlled Markovian evolution
- HOW SHOULD ONE DEFINE ENTROPY PRODUCTION FOR NONEQUILIBRIUM QUANTUM SPIN SYSTEMS?
- A mathematical framework for stochastic climate models
- STOCHASTIC DYNAMICS OF A COUPLED ATMOSPHERE–OCEAN MODEL
- Entropy production and thermodynamics of nonequilibrium stationary states: A point of view