Rapid and accurate reachability analysis for nonlinear dynamic systems by exploiting model redundancy

•A method is presented for accurately bounding the reachable sets of ODEs.•The key idea is to augment ODEs with redundant state variables that satisfy solution invariants by construction.•Algorithms are developed for exploiting invariants within fast interval bounding methods.•Case studies show that...

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Published inComputers & chemical engineering Vol. 106; pp. 596 - 608
Main Authors Shen, Kai, Scott, Joseph K.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 02.11.2017
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Abstract •A method is presented for accurately bounding the reachable sets of ODEs.•The key idea is to augment ODEs with redundant state variables that satisfy solution invariants by construction.•Algorithms are developed for exploiting invariants within fast interval bounding methods.•Case studies show that redundancy can significantly improve accuracy at modest additional cost. A new method is presented for enclosing the reachable sets of nonlinear ordinary differential equations subject to a range of inputs. Reachable set enclosures are used for uncertainty propagation, robust control, and global optimization of dynamic systems arising in a variety of applications. However, existing methods often provide an unworkable compromise between cost and accuracy. For example, fast interval methods often produce divergent bounds, while methods based on more complex sets scale poorly with problem size. To overcome this, a novel method is introduced for reducing the conservatism of fast interval methods through the select addition of redundant model equations that can be exploited in the bounding procedure. Several case studies demonstrate that such redundancy can dramatically reduce conservatism. The additional cost is modest in most cases, but does become significant when many redundant equations are used.
AbstractList •A method is presented for accurately bounding the reachable sets of ODEs.•The key idea is to augment ODEs with redundant state variables that satisfy solution invariants by construction.•Algorithms are developed for exploiting invariants within fast interval bounding methods.•Case studies show that redundancy can significantly improve accuracy at modest additional cost. A new method is presented for enclosing the reachable sets of nonlinear ordinary differential equations subject to a range of inputs. Reachable set enclosures are used for uncertainty propagation, robust control, and global optimization of dynamic systems arising in a variety of applications. However, existing methods often provide an unworkable compromise between cost and accuracy. For example, fast interval methods often produce divergent bounds, while methods based on more complex sets scale poorly with problem size. To overcome this, a novel method is introduced for reducing the conservatism of fast interval methods through the select addition of redundant model equations that can be exploited in the bounding procedure. Several case studies demonstrate that such redundancy can dramatically reduce conservatism. The additional cost is modest in most cases, but does become significant when many redundant equations are used.
Author Shen, Kai
Scott, Joseph K.
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Keywords Uncertainty propagation
Interval analysis
Global optimization
Differential inequalities
Reachability
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Snippet •A method is presented for accurately bounding the reachable sets of ODEs.•The key idea is to augment ODEs with redundant state variables that satisfy solution...
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StartPage 596
SubjectTerms Differential inequalities
Global optimization
Interval analysis
Reachability
Uncertainty propagation
Title Rapid and accurate reachability analysis for nonlinear dynamic systems by exploiting model redundancy
URI https://dx.doi.org/10.1016/j.compchemeng.2017.08.001
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