Chlorophyll Fluorometer for Intelligent Water Sampling by a Small Uncrewed Aircraft System (sUAS)

Caitlyn M. English, Zechariah B. Kitzhaber, Kazi Ragib I. Sanim, Michail Kalaitzakis, Bhanuprakash Kosaraju, James L. Pinckney, Michael E. Hodgson, Nikolaos I. Vitzilaios, Tammi L. Richardson, Michael L. Myrick

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

We describe a waterproof, lightweight (1.3 kg), low-power (∼1.1 W average power) fluorometer operating on 5 V direct current deployed on a small uncrewed aircraft system (sUAS) to measure chlorophyll and used for triggering environmental water sampling by the sUAS. The fluorometer uses a 450 nm laser modulated at 10 Hz for excitation and a standard photodiode and transimpedance amplifier for the detection of fluorescence. Additional detectors are available for measuring laser intensity and light scattering. Control of the fluorometer and communication between the fluorometer and the Raspberry Pi 4B computer controlling the sampler were provided by an Arduino microcontroller using the robot operating system (ROS). Calibrations were based on standards of dissolved chlorophyll extracted from Chlorella powder (a widely available dietary supplement). The detection limit for chlorophyll from these calibrations was found to be 0.2 μg per liter of water for a single 0.1 s differential measurement. The detection limit decreases with the square root of the integration time as expected. Detection limits increase by a factor of two to three when mounted in the sUAS due to electrical noise; sUAS acoustic noise and vibration do not appear to contribute significantly.

Original languageEnglish
Pages (from-to)94-105
Number of pages12
JournalApplied Spectroscopy
Volume77
Issue number1
DOIs
StatePublished - Jan 2023
Externally publishedYes

Keywords

  • aerial drone
  • automatic
  • chlorophyll
  • Fluorescence
  • fluorometer
  • sampling
  • small uncrewed aircraft system
  • sUAS
  • water

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