pystorms: A simulation sandbox for the development and evaluation of stormwater control algorithms
Sara P. Rimer, Abhiram Mullapudi, Sara C. Troutman, Gregory Ewing,, Benjamin D. Bowes, Aaron A. Akin, Jeffrey Sadler, Ruben Kertesz, Bryant, McDonnell, Luis Montestruque, Jon Hathaway, Jonathan L. Goodall, Branko, Kerkez

TL;DR
pystorms is a Python-based simulation sandbox designed to facilitate the development, testing, and comparison of smart stormwater control algorithms across diverse real-world-inspired scenarios, making research more accessible and efficient.
Contribution
It introduces a comprehensive simulation environment with real-world-inspired scenarios and a Python interface, enabling rigorous evaluation of stormwater control strategies.
Findings
Enabled comparison of control strategies using the sandbox
Demonstrated ease of testing with minimal code
Facilitated research accessibility and efficiency
Abstract
Recent accessibility of affordable sensing technologies, microcontrollers, and wireless communication technology has made it possible for stormwater systems to be retrofitted with an assortment of sensors and actuators. These smart stormwater systems have enabled the real-time sensing of their surrounding environmental dynamics, and subsequently, provide the basis for autonomous and adaptive operational control strategies. Additionally, these systems allow for inexpensive and minimally-invasive stormwater control interventions (e.g. hydraulic valve operated by cellularly-connected actuator) in lieu of new construction. However promising this area of smart stormwater control, there still remain barriers -- for experts and novices alike -- to access a set of shared tools and methods for investigating, developing, and contributing to it. In an effort to make smart stormwater control…
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Taxonomy
TopicsUrban Stormwater Management Solutions · Underwater Vehicles and Communication Systems · Opportunistic and Delay-Tolerant Networks
