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Autores principales: Huang, Yushen, Luo, Ertai, Bak, Stanley, Sun, Yifan
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2406.11056
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author Huang, Yushen
Luo, Ertai
Bak, Stanley
Sun, Yifan
author_facet Huang, Yushen
Luo, Ertai
Bak, Stanley
Sun, Yifan
contents In real world applications, uncertain parameters are the rule rather than the exception. We present a reachability algorithm for linear systems with uncertain parameters and inputs using set propagation of polynomial zonotopes. In contrast to previous methods, our approach is able to tightly capture the non-convexity of the reachable set. Building up on our main result, we show how our reachability algorithm can be extended to handle linear time-varying systems as well as linear systems with time-varying parameters. Moreover, our approach opens up new possibilities for reachability analysis of linear time-invariant systems, nonlinear systems, and hybrid systems. We compare our approach to other state of the art methods, with superior tightness on two benchmarks including a 9-dimensional vehicle platooning system. Moreover, as part of the journal extension, we investigate through a polynomial zonotope with special structure named multi-affine zonotopes and its optimization problem. We provide the corresponding optimization algorithm and experiment over the examples obatined from two benchmark systems, showing the efficiency and scalability comparing to the state of the art method for handling such type of set representation.
format Preprint
id arxiv_https___arxiv_org_abs_2406_11056
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publishDate 2024
record_format arxiv
spellingShingle Reachability Analysis for Linear Systems with Uncertain Parameters using Polynomial Zonotopes
Huang, Yushen
Luo, Ertai
Bak, Stanley
Sun, Yifan
Systems and Control
In real world applications, uncertain parameters are the rule rather than the exception. We present a reachability algorithm for linear systems with uncertain parameters and inputs using set propagation of polynomial zonotopes. In contrast to previous methods, our approach is able to tightly capture the non-convexity of the reachable set. Building up on our main result, we show how our reachability algorithm can be extended to handle linear time-varying systems as well as linear systems with time-varying parameters. Moreover, our approach opens up new possibilities for reachability analysis of linear time-invariant systems, nonlinear systems, and hybrid systems. We compare our approach to other state of the art methods, with superior tightness on two benchmarks including a 9-dimensional vehicle platooning system. Moreover, as part of the journal extension, we investigate through a polynomial zonotope with special structure named multi-affine zonotopes and its optimization problem. We provide the corresponding optimization algorithm and experiment over the examples obatined from two benchmark systems, showing the efficiency and scalability comparing to the state of the art method for handling such type of set representation.
title Reachability Analysis for Linear Systems with Uncertain Parameters using Polynomial Zonotopes
topic Systems and Control
url https://arxiv.org/abs/2406.11056