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      Optimizing network robustness via Krylov subspaces

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          Abstract

          We consider the problem of attaining either the maximal increase or reduction of the robustness of a complex network by means of a bounded modification of a subset of the edge weights. We propose two novel strategies combining Krylov subspace approximations with a greedy scheme and with the limited-memory BFGS. The paper discuss the computational and modeling aspects of our methodology and illustrates the various optimization problems on networks that can be addressed within the proposed framework. Finally, in the numerical experiments we compare the performances of our algorithms with state-of-the-art techniques on synthetic and real-world networks.

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          Journal
          08 March 2023
          Article
          2303.04971
          6a3e0b71-de6c-401a-a1f1-5e1ea4306958

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          math.NA cs.NA

          Numerical & Computational mathematics
          Numerical & Computational mathematics

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