Building sensor coverage in couture: balancing cost, coverage, and comfort

M Mahdi Ahmadnia M Mojtaba Maghrebi A Arezoo Shirazi A Alireza Ahmadian Fard Fini

Abstract

Abstract The layout and performance of air quality sensors are crucial for building control systems and occupant comfort. Most previous studies have primarily focused on sensor placement and density. However, aspects such as accuracy, multifunctionality, and cost-effectiveness have received relatively little attention. To address these gaps, this study proposes two integer linear programming (ILP) models to optimize sensor placement. One model is designed to optimize cost, while the other focuses on maximizing coverage. To achieve an optimal balance between cost and coverage, a Leader-Follower (bi-level) approach is employed. This approach enables attaining the required coverage at the lowest possible cost or maximizing coverage within a fixed budget. Measurement accuracy at different locations is also incorporated to support energy efficiency and occupant satisfaction. The integration of the ILP models with the Leader-Follower framework reduces computational complexity and runtime while preserving solution accuracy. The results demonstrate that the proposed method can efficiently and rapidly identify optimal sensor configurations while ensuring both reliable coverage and cost-effectiveness.

Article Details

Volume / Issue Vol. 15, Issue 1
Published October 23, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (4)

M

Mahdi Ahmadnia

M

Mojtaba Maghrebi

A

Arezoo Shirazi

A

Alireza Ahmadian Fard Fini