Robotic Detection and Estimation of Single Scuba Diver Respiration Rate from Underwater Video
Kutzke, Demetrious T., Sattar, Junaed
–arXiv.org Artificial Intelligence
Human respiration rate (HRR) is an important physiological metric for diagnosing a variety of health conditions from stress levels to heart conditions. Estimation of HRR is well-studied in controlled terrestrial environments, yet robotic estimation of HRR as an indicator of diver stress in underwater for underwater human robot interaction (UHRI) scenarios is to our knowledge unexplored. We introduce a novel system for robotic estimation of HRR from underwater visual data by utilizing bubbles from exhalation cycles in scuba diving to time respiration rate. We introduce a fuzzy labeling system that utilizes audio information to label a diverse dataset of diver breathing data on which we compare four different methods for characterizing the presence of bubbles in images. Figure 1: Robotic estimation of diver respiration rate during Ultimately we show that our method is effective at estimating a closed-water evaluation of the proposed detection HRR by comparing the respiration rate output system. The Aqua autonomous underwater vehicle [8] is with human analysts.
arXiv.org Artificial Intelligence
Nov-24-2023
- Country:
- Asia > Thailand (0.04)
- Atlantic Ocean
- Caribbean Sea (0.04)
- Gulf of Mexico (0.04)
- North America
- Barbados (0.04)
- Mexico (0.04)
- United States > Minnesota
- Hennepin County > Minneapolis (0.14)
- Saint Louis County > Duluth (0.04)
- St. Louis County > Duluth (0.04)
- Washington County > Stillwater (0.04)
- Oceania > Australia (0.04)
- Genre:
- Research Report > Experimental Study (0.34)
- Industry:
- Technology: