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Sea High-Level Determination using Pseudorange Range Difference of Carrier Phase and Code between GPS Reflection and Directly Signal

机译:使用伪距范围的海运高级别测定载波阶段和GPS反射与直接信号之间的代码

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The GNSS signal reflection technique at the tide station can provide accurate results and is more far-reaching from the coast to the sea, it is possible to provide real-time sealevel information including high wave and tsunami. With the use of two receivers with two antennas, one facing upwards as a direct signal receiver and a second antenna facing downwards as a signal receiver of reflection can be obtained both phase data and GNSS signal codes from both direct and reflected signals. With the different methods of signal trajectory that propagates directly and propagates through reflection by sea level, it can be determined the difference in distance between the master and the shadow rover receivers. The sea level can be determined which is half the distance between the two receivers. In this paper, the results of the data analysis of the different trajectory distances of GNSS signals from code data are presented, from the simplest one, namely a GNSS satellite is assumed to have a linear relationship with the satellite elevation angle with a gradient proportional to sea level. The computation results show that the reflected signal data is suspected not only from sea level but originating from the surrounding environment. It is necessary to experiment with the reflected signal in an area that ensures that the signal is only reflected once by sea level or other reflected plane.
机译:潮汐站的GNSS信号反射技术可以提供准确的结果,并且从海岸到海岸达到深远,可以提供包括高波浪和海啸的实时Sealevel信息。通过使用具有两个天线的两个接收器,可以作为直接信号接收器的一个向上,作为反射信号接收器的前面向下的第二天线可以从直接和反射信号获得相位数据和GNSS信号代码。利用不同的信号轨迹的方法直接传播并通过海平面的反射传播,可以确定主站和影子流动站接收器之间的距离差异。可以确定海平面,这是两个接收器之间的距离的一半。在本文中,从代码数据呈现来自代码数据的不同轨迹距离的数据分析的结果,即,假设GNSS卫星与卫星仰角与梯度成比例具有线性关系。海平面。计算结果表明,反射信号数据不仅涉及来自海平面而且来自周围环境的源自。有必要在确保信号仅通过海平面或其他反射平面反射一次的区域中的反射信号进行实验。

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