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Probabilistic Solutions To Ordinary Differential Equations As Non-Linear Bayesian Filtering: A New Perspective

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arxiv 1810.03440 v4 pith:4VVSPXFB submitted 2018-10-08 stat.ME stat.COstat.ML

classification stat.MEstat.COstat.ML
keywords filteringapproximationsbayesiannon-linearproblemsolversprobabilisticdifferential
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We formulate probabilistic numerical approximations to solutions of ordinary differential equations (ODEs) as problems in Gaussian process (GP) regression with non-linear measurement functions. This is achieved by defining the measurement sequence to consist of the observations of the difference between the derivative of the GP and the vector field evaluated at the GP---which are all identically zero at the solution of the ODE. When the GP has a state-space representation, the problem can be reduced to a non-linear Bayesian filtering problem and all widely-used approximations to the Bayesian filtering and smoothing problems become applicable. Furthermore, all previous GP-based ODE solvers that are formulated in terms of generating synthetic measurements of the gradient field come out as specific approximations. Based on the non-linear Bayesian filtering problem posed in this paper, we develop novel Gaussian solvers for which we establish favourable stability properties. Additionally, non-Gaussian approximations to the filtering problem are derived by the particle filter approach. The resulting solvers are compared with other probabilistic solvers in illustrative experiments.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. rodeo: Probabilistic Methods of Parameter Inference for Ordinary Differential Equations

    stat.CO 2025-06 conditional novelty 5.0 of 10

    rodeo is a JAX-based Python library that implements probabilistic ODE solvers and several Bayesian parameter inference methods with linear scaling in system size.

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