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arXiv · 2607.24472

Debiased Machine Learning: Identification, Estimation, and Shape Constraints

Abstract

We develop a general framework of identification and estimation for automatic debiased machine learning (DML) where the parameter of interest $θ_0$ is identified by a moment condition involving a nuisance $γ_0$ that may be high dimensional. We establish conditions under which the Riesz representer $α_0$, which is at the core of DML, is identified, and show that the identification occurs precisely when $α_0$ uniquely optimizes a quadratic functional. This characterization enables us to develop a general estimation procedure for $α_0$ that allows for generic $γ_0$ including those defined by models with endogeneity and encompasses both classical sieves and modern architectures such as deep neural networks. To improve estimation precision and mitigate the curse of dimensionality, we incorporate shape constraints on $γ_0$ by embedding them into a possibly nonlinear parameter space. We illustrate our estimation procedure through simulations and empirical applications.

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BibTeXRIS

Qihui Chen, Ka Yan Cheng, Zheng Fang. 2026-07-30. Debiased Machine Learning: Identification, Estimation, and Shape Constraints. https://arxiv.org/abs/2607.24472

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