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Switched Latent Force Models for Movement Segmentation

Mauricio A. Álvarez, Jan Peters, Neil D. Lawrence, Bernhard Schölkopf

Year
2010
Citations
36
Access
Open access

Abstract

Latent force models encode the interaction between multiple related dynamical systems in the form of a kernel or covariance function. Each variable to be modeled is represented as the output of a differential equation and each differential equation is driven by a weighted sum of latent functions with uncertainty given by a Gaussian process prior. In this paper we consider employing the latent force model framework for the problem of determining robot motor primitives. To deal with discontinuities in the dynamical systems or the latent driving force we introduce\nan extension of the basic latent force model, that switches between different latent functions and potentially different dynamical systems. This creates a versatile\nrepresentation for robot movements that can capture discrete changes and non-linearities in the dynamics. We give illustrative examples on both synthetic data and for striking movements recorded using a BarrettWAM robot as haptic input device. Our inspiration is robot motor primitives, but we expect our model to have wide application for dynamical systems including models for human motion capture data and systems biology.

Keywords

Dynamical systems theoryComputer scienceLatent variableGaussian processHaptic technologyRepresentation (politics)CovarianceKernel (algebra)Latent variable modelGaussian

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