Airflow Source Seeking on Small Quadrotors Using a Single Flow Sensor
Lenworth Thomas, Tjaden Bridges, Sarah Bergbreiter

TL;DR
This paper introduces a novel airflow source-seeking method for small quadrotors using a custom flow sensor that detects both airflow magnitude and direction, enabling reliable source localization in confined environments.
Contribution
The work presents a new flow sensor integrated with a modified 'Cast and Surge' algorithm for small quadrotors, enhancing their ability to seek airflow sources.
Findings
Sensor can detect airflow in flight
Quadrotor reorients towards airflow direction
Algorithm reliably finds flow sources in trials
Abstract
As environmental disasters happen more frequently and severely, seeking the source of pollutants or harmful particulates using plume tracking becomes even more important. Plume tracking on small quadrotors would allow these systems to operate around humans and fly in more confined spaces, but can be challenging due to poor sensitivity and long response times from gas sensors that fit on small quadrotors. In this work, we present an approach to complement chemical plume tracking with airflow source-seeking behavior using a custom flow sensor that can sense both airflow magnitude and direction on small quadrotors < 100 g. We use this sensor to implement a modified version of the `Cast and Surge' algorithm that takes advantage of flow direction sensing to find and navigate towards flow sources. A series of characterization experiments verified that the system can detect airflow while in…
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Taxonomy
TopicsInsect Pheromone Research and Control · Fire Detection and Safety Systems · Combustion and flame dynamics
