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Hauptverfasser: Fibich, Gadi, Golan, Amit, Schochet, Steven
Format: Preprint
Veröffentlicht: 2024
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Online-Zugang:https://arxiv.org/abs/2407.10816
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_version_ 1866910527852118016
author Fibich, Gadi
Golan, Amit
Schochet, Steven
author_facet Fibich, Gadi
Golan, Amit
Schochet, Steven
contents We analyze the Bass and SI models for the spreading of innovations and epidemics, respectively, on homogeneous complete networks, circular networks, and heterogeneous complete networks with two homogeneous groups. We allow the network parameters to be time dependent, which is a prerequisite for the analysis of optimal strategies on networks. Using a novel top-down analysis of the master equations, we present a simple proof for the monotone convergence of these models to their respective infinite-population limits. This leads to explicit expressions for the expected adoption or infection level in the Bass and SI models, respectively, on infinite homogeneous complete and circular networks, and on heterogeneous complete networks with two homogeneous groups with time-dependent parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10816
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Monotone convergence of spreading processes on networks
Fibich, Gadi
Golan, Amit
Schochet, Steven
Classical Analysis and ODEs
Social and Information Networks
Physics and Society
Populations and Evolution
91D30 (Primary), 34E10, 92D30, 60J80, 92D25 (Secondary)
We analyze the Bass and SI models for the spreading of innovations and epidemics, respectively, on homogeneous complete networks, circular networks, and heterogeneous complete networks with two homogeneous groups. We allow the network parameters to be time dependent, which is a prerequisite for the analysis of optimal strategies on networks. Using a novel top-down analysis of the master equations, we present a simple proof for the monotone convergence of these models to their respective infinite-population limits. This leads to explicit expressions for the expected adoption or infection level in the Bass and SI models, respectively, on infinite homogeneous complete and circular networks, and on heterogeneous complete networks with two homogeneous groups with time-dependent parameters.
title Monotone convergence of spreading processes on networks
topic Classical Analysis and ODEs
Social and Information Networks
Physics and Society
Populations and Evolution
91D30 (Primary), 34E10, 92D30, 60J80, 92D25 (Secondary)
url https://arxiv.org/abs/2407.10816