An improved model and simulator design of GNSS ocean reflected signals

Bowen Li, Bo Zhang, Dongkai Yang, Yongqiang Qi
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引用次数: 3

Abstract

Global Navigation Satellite System-Reflection (GNSS-R) technology has attracted more and more attention in remote sensing and navigation field, especially in the ocean remote sensing. A feasible GNSS-R model based on reverse thinking method was proposed in our previous work. In this paper, in order to make the model applicable to the case of higher wind speed, we presented an improved GNSS-R model by expanding the range of time delay from 5 to 9 chips. A mathematical derivation was built to guide the design of the model. The number of reflected signals was 30 and the delay interval was 0.3 chip in the newly built model by optimizing the accuracy and computation of the model. Moreover, a GNSS-R software simulator was designed based on the improved GNSS-R model. The simulation reflected signals were compared with the experimental data collected in Yantai, Shandong province. Good agreement was found in the simulation results and experimental data, and the correlation coefficient between two correlation power curves was 0.9964, with the error in retrieving wind speed of 0.8 m/s. These results proved that the improved GNSS-R model and the simulator design can be applied in simulation of GNSS ocean reflected signals.
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GNSS海洋反射信号改进模型及模拟器设计
全球卫星导航系统反射(GNSS-R)技术在遥感和导航领域,特别是海洋遥感领域受到越来越多的关注。我们在之前的工作中提出了一种可行的基于逆向思维方法的GNSS-R模型。为了使模型适用于更高风速的情况,本文提出了一种改进的GNSS-R模型,将时延范围从5个芯片扩大到9个芯片。建立了数学推导来指导模型的设计。通过优化模型的精度和计算,新建立的模型中反射信号数为30个,延迟间隔为0.3个芯片。基于改进的GNSS-R模型,设计了GNSS-R软件模拟器。将模拟反射信号与山东烟台实测数据进行了比较。仿真结果与实验数据吻合较好,两个相关功率曲线的相关系数为0.9964,反演风速误差为0.8 m/s。结果表明,改进的GNSS- r模型和模拟器设计可以应用于GNSS海洋反射信号的仿真。
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