Tag Archives: Tierny

29th International Congress on Insurance: Mathematics and Economics, 서울, June 2026

The 29th International Congress on Insurance: Mathematics and Economics (IME 2026) will be held in Seoul, I will present on Friday our joint work with Bertille Tierny and François Hu, Direct and Indirect Discrimination in Generalized Linear Models (the paper is available on arxiv)

Generalized linear models are central to actuarial modelling of binary risk, claim frequency, utilization, and cost-related outcomes. Yet fairness diagnostics often rely on linear-model intuitions, although GLM predictions are obtained by transporting a latent score through a nonlinear inverse link. We develop a moment-based decomposition framework for diagnosing group disparities in fitted GLM predictions. In an exact linear-Gaussian benchmark, the Wasserstein barycentric criterion for distributional demographic-parity violation reduces to a two-moment criterion and decomposes into direct mean, indirect mean, interaction, and structural components. For GLMs, we distinguish the empirical output-scale criterion U_2(f), a within-group proxy \widetilde U_2(f), and a leading decomposition D_1(f). This leading term preserves the four linear channels and adds two curvature components induced by the inverse link: curvature coupling and curvature amplification. We derive explicit formulas for logistic, Poisson, and Tweedie specifications and illustrate the diagnostic on medical-expenditure survey data. The framework is not a legal test of discrimination, nor a full characterization of distributional parity outside the linear-Gaussian case. It is a tractable actuarial diagnostic for identifying whether fitted prediction disparities arise from explicit sensitive effects, proxy-mediated covariate profiles, covariance-structure differences, or nonlinear link effects.

The slides are now available online.

Buzy week in Singapore

It has been a buzy week at the 40th Annual AAAI Conference on Artificial Intelligence, here in Singapore where Bertille Tierny and François Hu will give talks (in the “main track”, in the “student track”, in a workshop) to present our recent work, “Decomposing Direct and Indirect Biases in Linear Models under Demographic Parity Constraint“. More to come very soon…

On my way to Singapore

By the end of the week, I will be in Singapore. I plan to spend some time at the 40th Annual AAAI Conference on Artificial Intelligence, where Bertille Tierny and François Hu will give talks (in the “main track” and in the “student track”) to present our recent work, “Decomposing Direct and Indirect Biases in Linear Models under Demographic Parity Constraint“.

Then I will spend two weeks, invited at ESSEC Asia-Pacific, invited by Pierre Alquier. A couple of talks are also scheduled.

 

Decomposing Direct and Indirect Biases in Linear Models under Demographic Parity Constraint

Our paper “Decomposing Direct and Indirect Biases in Linear Models under Demographic Parity Constraint“, with Bertille Tierny and François Hu is now online on ArXiv.

Linear models are widely used in high-stakes decision-making due to their simplicity and interpretability. Yet when fairness constraints such as demographic parity are introduced, their effects on model coefficients, and thus on how predictive bias is distributed across features, remain opaque. Existing approaches on linear models often rely on strong and unrealistic assumptions, or overlook the explicit role of the sensitive attribute, limiting their practical utility for fairness assessment. We extend the work of (Chzhen and Schreuder, 2022) and (Fukuchi and Sakuma, 2023) by proposing a post-processing framework that can be applied on top of any linear model to decompose the resulting bias into direct (sensitive-attribute) and indirect (correlated-features) components. Our method analytically characterizes how demographic parity reshapes each model coefficient, including those of both sensitive and non-sensitive features. This enables a transparent, feature-level interpretation of fairness interventions and reveals how bias may persist or shift through correlated variables. Our framework requires no retraining and provides actionable insights for model auditing and mitigation. Experiments on both synthetic and real-world datasets demonstrate that our method captures fairness dynamics missed by prior work, offering a practical and interpretable tool for responsible deployment of linear models.

On sera à Singapour pour le présenter fin janvier, à AAAI 2026, 40th Annual AAAI Conference on Artificial Intelligence.