English

Time-dependent identification problem for a fractional Telegraph equation with the Caputo derivative

Analysis of PDEs 2023-09-01 v1

Abstract

This study investigates the inverse problem of determining the right-hand side of a telegraph equation given in a Hilbert space. The main equation under consideration has the form (Dtρ)2u(t)+2αDtρu(t)+Au(t)=p(t)q+f(t)(D_{t}^{\rho})^{2}u(t)+2\alpha D_{t}^{\rho}u(t)+Au(t)=p( t)q+f(t), where 0<tT0<t\leq T, 0<ρ<10<\rho<1 and DtρD_{t}^{\rho} is the Caputo derivative. The equation contains a self-adjoint positive operator AA and a time-varying multiplier p(t)p(t) in the source function, which, like the solution of the equation, is unknown. To solve the inverse problem, an additional condition B[u(t)]=ψ(t)B[u(t)] = \psi(t) is imposed, where BB is an arbitrary bounded linear functional. The existence and uniqueness of a solution to the problem are established and stability inequalities are derived. It should be noted that, as far as we know, such an inverse problem for the telegraph equation is considered for the first time. Examples of the operator AA and the functional BB are discussed.

Keywords

Cite

@article{arxiv.2308.16189,
  title  = {Time-dependent identification problem for a fractional Telegraph equation with the Caputo derivative},
  author = {Ravshan Ashurov and Rajapboy Saparbayev},
  journal= {arXiv preprint arXiv:2308.16189},
  year   = {2023}
}
R2 v1 2026-06-28T12:08:38.062Z