An overview of SEPTR: Shallow Water Environmental Profiler in a Trawl-Safe Real-Time configuration

V. Grandi, A. Carta, L. Gualdesi, F. De Strobel, S. Fioravanti
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引用次数: 6

Abstract

An increased demand for shallow water current measurements, as a result of both military and environmental interest in littoral water activity, has recently accelerated the technological evolution of ADCPs. Long term (several months) deployments of ADCPs in heavily fished coastal waters are now relatively common. This paper describes the work conducted at NURC since the 90's in the field of trawl-safe ADCP platforms. This includes both the Barny Sentinel model and its more recent real-time evolution into the SEPTR that adds an automated water column profiler, additional sensors and two-way communication at regular intervals. It is intended for 3-6 month deployments in areas where water column instruments are at risk from fishing trawlers, but with real-time data return and control via two-way satellite communication. SEPTR includes a micro-controller based bottom platform which houses an ADCP, wave/tide gage, ambient noise sensor array, and a water column profiler buoy system. The profiler performs autonomous vertical profiling of CTD and Fluorometer-Scattering Meter within the water column at depths down to 100m. Two-way communication of data, position and control allows profile results to be returned in near-real time, and operational commands together with profile schedules to be sent to multiple profiler instruments.
概述SEPTR:拖网安全实时配置的浅水环境分析器
由于军事和环境对沿海水域活动的兴趣,对浅水电流测量的需求增加,最近加速了adcp的技术发展。在大量捕捞的沿海水域长期(几个月)部署adcp现在相对普遍。本文介绍了自90年代以来NURC在拖网安全ADCP平台领域所做的工作。这包括barney Sentinel模型及其最新的实时演变为SEPTR, SEPTR增加了一个自动水柱分析器,额外的传感器和定期双向通信。它计划在水柱仪器受到拖网渔船威胁的地区部署3-6个月,但通过双向卫星通信进行实时数据返回和控制。SEPTR包括一个基于微控制器的底部平台,该平台装有ADCP,波浪/潮汐计,环境噪声传感器阵列和水柱剖面仪浮标系统。剖面仪在水深100米的水柱内对CTD和荧光散射仪进行自主垂直剖面。数据、位置和控制的双向通信允许近乎实时地返回剖面结果,并将操作命令与剖面时间表一起发送到多个剖面仪。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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