Egi S M
Galatasaray University, MTF Computer Engineering Department, Ortakoy, 34357, Istanbul, Turkiye.
Undersea Hyperb Med. 2009 Jan-Feb;36(1):65-71.
Despite the abundance of telemetric applications for ecology, behavior and physiology of marine life, few efforts were reported about the use of acoustic telemetry for SCUBA divers. The objective of this study is to design and test an acoustic telemetry system for monitoring breathing gases of a Dräger Dolphin semi-closed circuit rebreather as well as the depth of the diver. The system is designed around a PC based surface unit and a microcontroller based diver carried module that digitizes the output of CO2 and O2 sensors located in the inhalation side of the canister. One pair of acoustic modems establishes the data link between the microcontroller and the topside PC. The graphical user interface is written in C# and enables the recording of the diving session as well. The system is calibrated in a hyperbaric chamber and tested successfully with four dives in three different environments using 100% O2 and Nitrox (47.9% O2 - 52.1% N2) up to 15 m depth and a distance of 40 m between acoustic modems. The telemetry data cannot be used only for recording physiological data but also provides an important operational safety tool to monitor the rebreather user. The future designs will include actuators for controlling the diluent and oxygen flow to closed circuit mix gas rebreathers.
尽管用于海洋生物生态、行为和生理研究的遥测应用丰富多样,但关于将声学遥测用于水肺潜水员的报道却很少。本研究的目的是设计并测试一种声学遥测系统,用于监测德雷格海豚半封闭循环呼吸器的呼吸气体以及潜水员的深度。该系统围绕基于个人电脑的水面单元和基于微控制器的潜水员携带模块设计,该模块对位于滤毒罐吸入侧的二氧化碳和氧气传感器的输出进行数字化处理。一对声学调制解调器在微控制器和水面电脑之间建立数据链路。图形用户界面用C#编写,还能记录潜水过程。该系统在高压舱中进行了校准,并在三种不同环境下进行了四次潜水测试,使用纯氧和氮氧混合气(47.9%氧气 - 52.1%氮气),深度达15米,声学调制解调器之间的距离为40米,测试成功。遥测数据不仅可用于记录生理数据,还为监测循环呼吸器使用者提供了重要的操作安全工具。未来的设计将包括用于控制向封闭循环混合气呼吸器输送稀释剂和氧气流量的执行器。