State Estimator Design: Addressing General Delay Structures with Dissipative Constraints

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Feng, Qian, Xiao, Feng, Wang, Xiaoyu
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929451579736064
author Feng, Qian
Xiao, Feng
Wang, Xiaoyu
author_facet Feng, Qian
Xiao, Feng
Wang, Xiaoyu
contents Dissipative estimator (observer) design for continuous time-delay systems poses a significant challenge when an unlimited number of pointwise and general distributed delays (DDs) are concerned. We propose an effective solution to this semi-open problem using the Krasovski\uı functional (KF) framework in conjunction with a quadratic supply rate function, where both the plant and the estimator can accommodate an unlimited number of pointwise and general distributed delays with an unlimited number of square-integrable kernels. A key contribution is the introduction of a control concept called Kronecker-Seuret Decomposition (KSD) for matrix-valued functions, which allows for the factorizations or approximations of any DD integral kernel without introducing conservatism. Moreover, using KSD facilitates the construction of complete-type KFs with integral kernels that can contain any number of weakly differentiable and linearly independent functions. Our proposed solution is formulated as sequential convex SDP problems and is set out in two theorems along with an off-line iterative algorithm, which eliminates the need for nonlinear numerical solvers. We show the effectiveness of our method using two challenging numerical experiments, including a system stabilized by a non-smooth controller.
format Preprint
id arxiv_https___arxiv_org_abs_2307_12694
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle State Estimator Design: Addressing General Delay Structures with Dissipative Constraints
Feng, Qian
Xiao, Feng
Wang, Xiaoyu
Optimization and Control
Systems and Control
Dissipative estimator (observer) design for continuous time-delay systems poses a significant challenge when an unlimited number of pointwise and general distributed delays (DDs) are concerned. We propose an effective solution to this semi-open problem using the Krasovski\uı functional (KF) framework in conjunction with a quadratic supply rate function, where both the plant and the estimator can accommodate an unlimited number of pointwise and general distributed delays with an unlimited number of square-integrable kernels. A key contribution is the introduction of a control concept called Kronecker-Seuret Decomposition (KSD) for matrix-valued functions, which allows for the factorizations or approximations of any DD integral kernel without introducing conservatism. Moreover, using KSD facilitates the construction of complete-type KFs with integral kernels that can contain any number of weakly differentiable and linearly independent functions. Our proposed solution is formulated as sequential convex SDP problems and is set out in two theorems along with an off-line iterative algorithm, which eliminates the need for nonlinear numerical solvers. We show the effectiveness of our method using two challenging numerical experiments, including a system stabilized by a non-smooth controller.
title State Estimator Design: Addressing General Delay Structures with Dissipative Constraints
topic Optimization and Control
Systems and Control
url https://arxiv.org/abs/2307.12694