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Two-step Estimation of Network Formation Models with Unobserved Heterogeneities and Strategic Interactions

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arxiv 2404.12581 v1 pith:57YTBSST submitted 2024-04-19 econ.EM

classification econ.EM
keywords attributesestimatornetworkagentsstepunobservedchoiceeffects
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abstract

In this paper, I characterize the network formation process as a static game of incomplete information, where the latent payoff of forming a link between two individuals depends on the structure of the network, as well as private information on agents' attributes. I allow agents' private unobserved attributes to be correlated with observed attributes through individual fixed effects. Using data from a single large network, I propose a two-step estimator for the model primitives. In the first step, I estimate agents' equilibrium beliefs of other people's choice probabilities. In the second step, I plug in the first-step estimator to the conditional choice probability expression and estimate the model parameters and the unobserved individual fixed effects together using Joint MLE. Assuming that the observed attributes are discrete, I showed that the first step estimator is uniformly consistent with rate $N^{-1/4}$, where $N$ is the total number of linking proposals. I also show that the second-step estimator converges asymptotically to a normal distribution at the same rate.

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  1. Single-Network Finite-Sample Inference in Strategic Network Formation Models

    econ.EM 2026-07 accept novelty 8.0 of 10

    A single observed network suffices for finite-sample valid confidence sets on the strategic-complementarity parameter in network formation models, via realization-wise sandwich inequalities and simulated critical values.

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