A community-driven optimization framework for redrawing school attendance boundaries

Fuente: arXiv
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Hauptverfasser: Guan, Hongzhao, Riggins, Paul, Simko, Tyler, Mangat, Jasmine, Moe, Cassandra, Haider, Urooj, Pantano, Frank, McMillian, Effie G., Siegel-Hawley, Genevieve, Van Hentenryck, Pascal, Gillani, Nabeel
Format: Preprint
Veröffentlicht: 2025
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author Guan, Hongzhao
Riggins, Paul
Simko, Tyler
Mangat, Jasmine
Moe, Cassandra
Haider, Urooj
Pantano, Frank
McMillian, Effie G.
Siegel-Hawley, Genevieve
Van Hentenryck, Pascal
Gillani, Nabeel
author_facet Guan, Hongzhao
Riggins, Paul
Simko, Tyler
Mangat, Jasmine
Moe, Cassandra
Haider, Urooj
Pantano, Frank
McMillian, Effie G.
Siegel-Hawley, Genevieve
Van Hentenryck, Pascal
Gillani, Nabeel
contents The vast majority of US public school districts use school attendance boundaries to determine which student addresses are assigned to which schools. Existing work shows how redrawing boundaries can be a powerful policy lever for increasing access and opportunity for historically disadvantaged groups, even while maintaining other priorities like minimizing driving distances and preserving existing social ties between students and families. This study introduces a multi-objective algorithmic school rezoning framework and applies it to a large-scale rezoning effort impacting over 50,000 students through an ongoing researcher-school district partnership. The framework is designed to incorporate feedback from community members and policymakers, both by deciding which goals are optimized and also by placing differential ``importance'' on goals through weights from community surveys. Empirical results reveal the framework's ability to surface school redistricting plans that simultaneously advance a number of objectives often thought to be in competition with one another, including socioeconomic integration, transportation efficiency, and stable feeder patterns (transitions) between elementary, middle, and high schools. The paper also highlights how local education policymakers navigate several practical challenges, like building political will to make change in a polarized policy climate. The framework is built using open-source tools and publicly released to support school districts in exploring and implementing new policies to improve educational access and opportunity in the coming years.
format Preprint
id arxiv_https___arxiv_org_abs_2509_17130
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A community-driven optimization framework for redrawing school attendance boundaries
Guan, Hongzhao
Riggins, Paul
Simko, Tyler
Mangat, Jasmine
Moe, Cassandra
Haider, Urooj
Pantano, Frank
McMillian, Effie G.
Siegel-Hawley, Genevieve
Van Hentenryck, Pascal
Gillani, Nabeel
Computers and Society
The vast majority of US public school districts use school attendance boundaries to determine which student addresses are assigned to which schools. Existing work shows how redrawing boundaries can be a powerful policy lever for increasing access and opportunity for historically disadvantaged groups, even while maintaining other priorities like minimizing driving distances and preserving existing social ties between students and families. This study introduces a multi-objective algorithmic school rezoning framework and applies it to a large-scale rezoning effort impacting over 50,000 students through an ongoing researcher-school district partnership. The framework is designed to incorporate feedback from community members and policymakers, both by deciding which goals are optimized and also by placing differential ``importance'' on goals through weights from community surveys. Empirical results reveal the framework's ability to surface school redistricting plans that simultaneously advance a number of objectives often thought to be in competition with one another, including socioeconomic integration, transportation efficiency, and stable feeder patterns (transitions) between elementary, middle, and high schools. The paper also highlights how local education policymakers navigate several practical challenges, like building political will to make change in a polarized policy climate. The framework is built using open-source tools and publicly released to support school districts in exploring and implementing new policies to improve educational access and opportunity in the coming years.
title A community-driven optimization framework for redrawing school attendance boundaries
topic Computers and Society
url https://arxiv.org/abs/2509.17130