RTK-based GNSS drifters for monitoring in estuaries and rivers: Field experimental results

Charles Wang, K. Suara, Richard J. Brown, Yanming Feng
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Abstract

This paper presents a novel RTK-based GNSS Lagrangian drifter system that is capable of monitoring water velocity, turbulence and dispersion coefficients of river and estuarine. The Lagrangian drifters use the dual-frequency real time kinematic (RTK) technique for both position and velocity estimations. The capsule is designed to meet the requirements such as minimizing height, diameter, minimizing the direct wind drag, positive buoyancy for satellite signal reception and stability, and waterproof housing for electronic components, such as GNSS receiver and computing board. The collected GNSS data are processed with post-processing RTK software. Several experiments have been carried out in two rivers in Brisbane and Sunshine Coast in Queensland. Results show that the high accuracy GNSS-drifters can be used to measure dispersion coefficient resulting from sub-tidal velocity fluctuations in shallow tidal water. In addition, the RTK-GNSS drifters respond well to vertical motion and thus could be applicable to flood monitoring.
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基于rtk的河口河流监测GNSS漂移仪:野外试验结果
提出了一种新型的基于rtk的GNSS拉格朗日漂移系统,该系统能够监测河流和河口的水流速度、湍流度和色散系数。拉格朗日漂移器使用双频实时运动学(RTK)技术进行位置和速度估计。胶囊舱的设计满足以下要求:最小高度、最小直径、最小直接风阻、卫星信号接收和稳定的正浮力、GNSS接收机和计算板等电子元件的防水外壳。采集到的GNSS数据用后处理RTK软件进行处理。在布里斯班和昆士兰阳光海岸的两条河流中进行了几次实验。结果表明,高精度gnss漂移仪可用于测量浅海潮下速度波动引起的频散系数。此外,RTK-GNSS漂移仪对垂直运动响应良好,可用于洪水监测。
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