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Computer Science > Machine Learning

Title: Deep Sensitivity Analysis for Objective-Oriented Combinatorial Optimization

Abstract: Pathogen control is a critical aspect of modern poultry farming, providing important benefits for both public health and productivity. Effective poultry management measures to reduce pathogen levels in poultry flocks promote food safety by lowering risks of food-borne illnesses. They also support animal health and welfare by preventing infectious diseases that can rapidly spread and impact flock growth, egg production, and overall health. This study frames the search for optimal management practices that minimize the presence of multiple pathogens as a combinatorial optimization problem. Specifically, we model the various possible combinations of management settings as a solution space that can be efficiently explored to identify configurations that optimally reduce pathogen levels. This design incorporates a neural network feedback-based method that combines feature explanations with global sensitivity analysis to ensure combinatorial optimization in multiobjective settings. Our preliminary experiments have promising results when applied to two real-world agricultural datasets. While further validation is still needed, these early experimental findings demonstrate the potential of the model to derive targeted feature interactions that adaptively optimize pathogen control under varying real-world constraints.
Comments: The 2023 International Conference on Computational Science & Computational Intelligence (CSCI'23)
Subjects: Machine Learning (cs.LG); Artificial Intelligence (cs.AI)
Cite as: arXiv:2403.00016 [cs.LG]
  (or arXiv:2403.00016v1 [cs.LG] for this version)

Submission history

From: Nisha Pillai [view email]
[v1] Wed, 28 Feb 2024 02:15:47 GMT (3504kb,D)

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