Computer Science > Machine Learning
[Submitted on 31 Oct 2023 (v1), last revised 8 Mar 2024 (this version, v2)]
Title:Balancing Act: Constraining Disparate Impact in Sparse Models
View PDF HTML (experimental)Abstract:Model pruning is a popular approach to enable the deployment of large deep learning models on edge devices with restricted computational or storage capacities. Although sparse models achieve performance comparable to that of their dense counterparts at the level of the entire dataset, they exhibit high accuracy drops for some data sub-groups. Existing methods to mitigate this disparate impact induced by pruning (i) rely on surrogate metrics that address the problem indirectly and have limited interpretability; or (ii) scale poorly with the number of protected sub-groups in terms of computational cost. We propose a constrained optimization approach that directly addresses the disparate impact of pruning: our formulation bounds the accuracy change between the dense and sparse models, for each sub-group. This choice of constraints provides an interpretable success criterion to determine if a pruned model achieves acceptable disparity levels. Experimental results demonstrate that our technique scales reliably to problems involving large models and hundreds of protected sub-groups.
Submission history
From: Juan Ramirez [view email][v1] Tue, 31 Oct 2023 17:37:35 UTC (2,225 KB)
[v2] Fri, 8 Mar 2024 00:22:38 UTC (2,220 KB)
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