English

Skew-t Filter and Smoother with Improved Covariance Matrix Approximation

Systems and Control 2018-11-28 v2 Computation

Abstract

Filtering and smoothing algorithms for linear discrete-time state-space models with skew-t-distributed measurement noise are proposed. The algorithms use a variational Bayes based posterior approximation with coupled location and skewness variables to reduce the error caused by the variational approximation. Although the variational update is done suboptimally using an expectation propagation algorithm, our simulations show that the proposed method gives a more accurate approximation of the posterior covariance matrix than an earlier proposed variational algorithm. Consequently, the novel filter and smoother outperform the earlier proposed robust filter and smoother and other existing low-complexity alternatives in accuracy and speed. We present both simulations and tests based on real-world navigation data, in particular GPS data in an urban area, to demonstrate the performance of the novel methods. Moreover, the extension of the proposed algorithms to cover the case where the distribution of the measurement noise is multivariate skew-tt is outlined. Finally, the paper presents a study of theoretical performance bounds for the proposed algorithms.

Keywords

Cite

@article{arxiv.1608.07435,
  title  = {Skew-t Filter and Smoother with Improved Covariance Matrix Approximation},
  author = {Henri Nurminen and Tohid Ardeshiri and Robert Piché and Fredrik Gustafsson},
  journal= {arXiv preprint arXiv:1608.07435},
  year   = {2018}
}

Comments

14 pages, 15 figures

R2 v1 2026-06-22T15:31:52.154Z