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Research on Digital Elevation Model Using GNSS-IR Technology

机译:基于GNSS-IR技术的数字高程模型研究

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With the continuous in-depth research on the emerging technology of GNSS remote sensing, GNSS-IR technology is widely used in various environmental remote sensing. It is a new attempt to use this technology to interpret digital elevation models. This article explains the theoretical mechanism of using GNSS-IR technology to interpret digital elevation models.. The signal-to-noise ratio data of different azimuths and elevation angles, calculate the difference between the reflection height parameter and the height of the station, and calculate the first Fresnel reflection zone (FFZ) corresponding to different signal-to-noise ratio (SNR) reflection component sequences), and finally assign the value to the corresponding grid to interpret the digital elevation model of the site. In order to verify the feasibility of the theory, this paper selects a flat bare ground as the experimental site, and uses different receivers for analysis. The experimental results show that the height of the station retrieved by GNSS-IR technology is slightly different from the actual height of the station. The preliminary research results verify the feasibility of using GNSS-IR technology to interpret digital elevation models, and provide an important reference for the subsequent use of GNSS-IR technology to interpret digital elevation models of complex terrain.
机译:随着对新兴的GNSS遥感技术研究的不断深入,GNSS-IR技术被广泛应用于各种环境遥感中。利用这项技术解释数字高程模型是一种新的尝试。本文解释了利用GNSS-IR技术解释数字高程模型的理论机制。。计算不同方位角和仰角的信噪比数据,计算反射高度参数与台站高度之间的差值,并计算对应于不同信噪比(SNR)反射分量序列的第一菲涅耳反射区(FFZ),最后将该值指定给相应的网格,以解释场地的数字高程模型。为了验证该理论的可行性,本文选择了一个平坦的裸露地面作为实验场地,并使用不同的接收机进行分析。实验结果表明,GNSS-IR技术反演的台站高度与实际台站高度略有差异。初步研究结果验证了利用GNSS-IR技术解释数字高程模型的可行性,为后续利用GNSS-IR技术解释复杂地形的数字高程模型提供了重要参考。

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