English

Fundamental limitations of network reconstruction

Systems and Control 2016-01-12 v2 Optimization and Control Biological Physics Physics and Society

Abstract

Network reconstruction is the first step towards understanding, diagnosing and controlling the dynamics of complex networked systems. It allows us to infer properties of the interaction matrix, which characterizes how nodes in a system directly interact with each other. Despite a decade of extensive studies, network reconstruction remains an outstanding challenge. The fundamental limitations governing which properties of the interaction matrix (e.g., adjacency pattern, sign pattern and degree sequence) can be inferred from given temporal data of individual nodes remain unknown. Here we rigorously derive necessary conditions to reconstruct any property of the interaction matrix. These conditions characterize how uncertain can we be about the coupling functions that characterize the interactions between nodes, and how informative does the measured temporal data need to be; rendering two classes of fundamental limitations of network reconstruction. Counterintuitively, we find that reconstructing any property of the interaction matrix is generically as difficult as reconstructing the interaction matrix itself, requiring equally informative temporal data. Revealing these fundamental limitations shed light on the design of better network reconstruction algorithms, which offer practical improvements over existing methods.

Keywords

Cite

@article{arxiv.1508.03559,
  title  = {Fundamental limitations of network reconstruction},
  author = {Marco Tulio Angulo and Jaime A. Moreno and Albert-László Barabási and Yang-Yu Liu},
  journal= {arXiv preprint arXiv:1508.03559},
  year   = {2016}
}

Comments

11 pages, 3 figures

R2 v1 2026-06-22T10:33:56.815Z