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Conference paper ยท Book chapter

Guaranteed Error Bounds on Approximate Model Abstractions Through Reachability Analysis

From

Microsoft Research Cambridge1

IMT Institute for Advanced Studies Lucca2

Department of Applied Mathematics and Computer Science, Technical University of Denmark3

Formal Methods, Department of Applied Mathematics and Computer Science, Technical University of Denmark4

It is well known that exact notions of model abstraction and reduction for dynamical systems may not be robust enough in practice because they are highly sensitive to the specific choice of parameters. In this paper we consider this problem for nonlinear ordinary differential equations (ODEs) with polynomial derivatives.

We introduce approximate differential equivalence as a more permissive variant of a recently developed exact counterpart, allowing ODE variables to be related even when they are governed by nearby derivatives. We develop algorithms to (i) compute the largest approximate differential equivalence; (ii) construct an approximate quotient model from the original one via an appropriate parameter perturbation; and (iii) provide a formal certificate on the quality of the approximation as an error bound, computed as an over-approximation of the reachable set of the perturbed model.

Finally, we apply approximate differential equivalences to study the effect of parametric tolerances in models of symmetric electric circuits.

Language: English
Publisher: Springer
Year: 2018
Pages: 104-121
Proceedings: 15th International Conference on Quantitative Evaluation of SysTems
Series: Lecture Notes in Computer Science
Journal subtitle: 15th International Conference, Qest 2018, Beijing, China, September 4-7, 2018, Proceedings
ISBN: 3319991531 , 331999154x , 9783319991535 , 9783319991542 and 331999154X
ISSN: 03029743 and 16113349
Types: Conference paper and Book chapter
DOI: 10.1007/978-3-319-99154-2_7
ORCIDs: Vandin, Andrea and 0000-0002-8210-545X

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