Simultaneous Input and State Estimation Under Output Quantization: A Gaussian Mixture Approach

González, RA; Cedeno A.L.

Keywords: random variables, vectors, noise, filtering, linear systems, state estimation, Filtering algorithms, Bayesian filtering, Bayes methods, Quantization (signal), Probabilistic logic, Simultaneous input and state estimation, quantized systems

Abstract

Simultaneous Input and State Estimation (SISE) enables the reconstruction of unknown inputs and internal states in dynamical systems, with applications in fault detection, robotics, and control. While various methods exist for linear systems, extensions to systems with output quantization are scarce, and no formal connections to limit Kalman filters are known in this context. This letter addresses these gaps by proposing a novel SISE algorithm for linear systems with quantized output measurements. The proposed algorithm introduces a Gaussian mixture model formulation of the observation model, which leads to closed-form recursive equations in the form of a Gaussian sum filter. In the absence of input prior knowledge, the recursions are shown to converge to a limit-case SISE algorithm, implementable as a bank of linear SISE filters running in parallel. A simulation example is presented to illustrate the effectiveness of the proposed approach. © IEEE. 2017 IEEE.

Más información

Título según WOS: Simultaneous Input and State Estimation Under Output Quantization: A Gaussian Mixture Approach
Título según SCOPUS: Simultaneous Input and State Estimation Under Output Quantization: A Gaussian Mixture Approach
Título de la Revista: IEEE Control Systems Letters
Volumen: 9
Editorial: Institute of Electrical and Electronics Engineers Inc.
Fecha de publicación: 2025
Página de inicio: 1946
Página final: 1951
Idioma: English
DOI:

10.1109/LCSYS.2025.3586656

Notas: ISI, SCOPUS