LGMEMLMar 23, 2024

Identifiable Latent Neural Causal Models

arXiv:2403.15711v111 citationsh-index: 80
Originality Highly original
AI Analysis

This work addresses the challenge of reliable causal representation learning for improved predictions under unseen distribution shifts, representing a foundational advance in causal inference.

The paper tackles the problem of identifying latent causal representations from observed data by establishing a sufficient and necessary condition for identifiability under distribution shifts in latent additive noise models, with empirical results showing outstanding performance on synthetic and real-world datasets.

Causal representation learning seeks to uncover latent, high-level causal representations from low-level observed data. It is particularly good at predictions under unseen distribution shifts, because these shifts can generally be interpreted as consequences of interventions. Hence leveraging {seen} distribution shifts becomes a natural strategy to help identifying causal representations, which in turn benefits predictions where distributions are previously {unseen}. Determining the types (or conditions) of such distribution shifts that do contribute to the identifiability of causal representations is critical. This work establishes a {sufficient} and {necessary} condition characterizing the types of distribution shifts for identifiability in the context of latent additive noise models. Furthermore, we present partial identifiability results when only a portion of distribution shifts meets the condition. In addition, we extend our findings to latent post-nonlinear causal models. We translate our findings into a practical algorithm, allowing for the acquisition of reliable latent causal representations. Our algorithm, guided by our underlying theory, has demonstrated outstanding performance across a diverse range of synthetic and real-world datasets. The empirical observations align closely with the theoretical findings, affirming the robustness and effectiveness of our approach.

Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

Your Notes