For a reaction-diffusion equation with unknown right-hand side and non-local measurements subject to unknown constant measurement delay, we consider the nonlinear inverse problem of estimating the associated leading eigenvalues and measurement delay from a finite number of noisy measurements. We propose a reconstruction criterion and, for small enough noise intensity, prove existence and uniqueness of the desired approximation and derive closed-form expressions for the first-order condition numbers, as well as bounds for their asymptotic behavior in a regime when the number of measurements tends to infinity and the inter-sampling interval length is fixed. We perform numerical simulations indicating that the exponential fitting algorithm ESPRIT is first-order optimal, namely, its first-order condition numbers have the same asymptotic behavior as the analytic ones in this regime. Copyright (c) 2024 The Authors.
Data-driven Delay Estimation in Reaction-Diffusion Systems via Exponential Fitting / Kats, R.; Giordano, G.; Batenkov, D.. - 58:27(2024), pp. 102-107. ( TDS 2024 Udine (Italy) 24 - 27 September 2024) [10.1016/j.ifacol.2024.10.307].
Data-driven Delay Estimation in Reaction-Diffusion Systems via Exponential Fitting
Kats R.;Giordano G.;
2024-01-01
Abstract
For a reaction-diffusion equation with unknown right-hand side and non-local measurements subject to unknown constant measurement delay, we consider the nonlinear inverse problem of estimating the associated leading eigenvalues and measurement delay from a finite number of noisy measurements. We propose a reconstruction criterion and, for small enough noise intensity, prove existence and uniqueness of the desired approximation and derive closed-form expressions for the first-order condition numbers, as well as bounds for their asymptotic behavior in a regime when the number of measurements tends to infinity and the inter-sampling interval length is fixed. We perform numerical simulations indicating that the exponential fitting algorithm ESPRIT is first-order optimal, namely, its first-order condition numbers have the same asymptotic behavior as the analytic ones in this regime. Copyright (c) 2024 The Authors.| File | Dimensione | Formato | |
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Descrizione: IFAC-PapersOnline 58-27 (2024)
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