Sea Surface Altimetry Using GNSS-R Signal and Analysis of Retrieval Accuracy Influenced by Wind Speed
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摘要: 海面高度作为最重要的海洋物理参数之一,在预防海啸、风暴潮中起到重要作用,是海洋科学,遥感测绘领域的重要研究内容之一。粗糙度作为影响海面测高精度的重要因素之一,主要是由风速变化引起,本文为了探究风速引起的粗糙度变化对海面测高精度的影响,分别进行了湖面实验与海面实验。通过对风速与反射信号相位差RMS关系的研究,定性分析了粗糙度对测高精度的影响,结果表明,在反射信号相位差RMS增加0.005(单位rad)时,测高的误差RMS增加了近一倍。Abstract: As one of the most important physical parameters of the ocean, sea surface height plays an important role in the prevention of tsunami and storm surge, and is one of the important research content of marine science and remote sensing surveying field. Roughness as an important factor affecting the sea surface altimetry, is mainly caused by the change of wind speed. In order to explore effects of roughness changes caused by wind speed on the accuracy of the height altimetry, two experiments were performed, the lake experiment and the sea experiment, respectively. Through the research of the wind speed and the reflection signal phase RMS relation, qualitative analysis of the influence of surface roughness on the accuracy of the height altimetry was performed. We find that the error of the sea surface altimetry RMS is nearly doubled when the skewing RMS is increased by 0.005 rad.
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Key words:
- GNSS /
- sea surface height /
- roughness /
- wind speed /
- altimetry accuracy
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[1] 张业成,张立海,马宗晋,等. 从印度洋地震海啸看中国的巨灾风险[J]. 灾害学, 2007, 22(3):105-108. [2] 王培涛,于福江,赵联大,等. 2011年3月11日日本地震海啸越洋传播及对中国影响的数值分析[J]. 地球物理学报, 2012, 55(9):3088-3096. [3] MARTINROSSELO J, et al. The PARIS concept: An experimental demonstration of sea surface altimetry using GPS reflected signals[J]. IEEE Transactions on Geoscience & Remote Sensing, 2001, 39(1):142-150. [4] RIVAS M B, MARTIN [5] PARK H, VALENCIA E, CAMPS A, et al. Delay tracking in spaceborne GNSS-R ocean altimetry[J]. IEEE Geoscience & Remote Sensing Letters, 2013, 10(1):57-61. [6] CARDELLACH E, FABRA F, NOGUS-CORREIG O, et al. GNSS-R ground based and airborne campaigns for ocean, land, ice, and snow techniques: Application to the GOLD-RTR data sets[J]. Radio Science, 2011, 46(6):3604-3629. [7] KUCWAJ J C, STIENNE G, REBOUL S, et al. Accurate pseudorange estimation by means of code and phase delay integration: application to GNSS-R altimetry[J]. IEEE Journal of Selected Topics in Applied Earth Observations & Remote Sensing, 2016, 9(10):1-11. [8] 王鑫,孙强,张训械,等. 中国首次岸基GNSS [9] 张益强,杨东凯,张其善,等. GPS海面散射信号探测技术研究[J]. 电子与信息学报, 2006, 28(6):1091-1094. [10] ZHANG Y, TIAN L, MENG W, et al. Feasibility of Code [11] MARTIN-NEIRA M, COLMENAREJO P, RUFFINI G, et al. Altimetry precision of 1 cm over a pond using the wide-lane carrier phase of GPS reflected signals[J]. Canadian Journal of Remote Sensing, 2002, 28(3):394-403. [12] BILICH A, LARSON K M, AXELRAD P. Modeling GPS phase multipath with SNR: Case study from the Salar de Uyuni, Boliva[J].Journal of Geophysical Research: Solid Earth (1978—2012). 2008: 317-323. [13] 杨东凯, 张其善. GNSS反射信号处理基础与实践: GNSS reflected signal processing: fundamentals and applications[M]. 北京:电子工业出版社, 2012. [14] [王娜子,鲍李峰,高凡. 逐历元GNSS [15] 周良明,郭佩芳,过杰. ERS散射计风速资料反演海面粗糙度[J]. 海洋湖沼通报, 2006(2):7-11. [16] 文凡,苏泽宇,吕红民. 粗糙度与风浪特征量关系的研究[J]. 海洋与湖沼, 2005, 36(1):31-35. [17] ZAVOROTNY V U, VORONOVICH A G. Scattering of GPS signals from the ocean with wind remote sensing application[J]. IEEE Transactions on Geoscience & Remote Sensing, 2000, 38(2):951-964. [18] 杨东凯,张益强,张其善,等. 基于GPS卫星信号的海面风场遥感方法研究与实现[J]. 遥感信息, 2006(3):10-12. [19] 白伟华. GNSS [20] RIUS A, CARDELLACH, MARTINsurface GPS-reflected signals[J]. Geoscience & Remote Sensing IEEE Transactions on, 2010, 48(4):2119-2127. [21] 舒宁. 微波遥感原理[M]. 武汉:武汉大学出版社, 2003. [22] FABRA F, CARDELLACH E, RIUS A, et al. [JP]Phase altimetry with dual polarization GNSS-R over sea ice[J]. Geoscience & Remote Sensing IEEE Transactions on, 2012, 50(99):1-10. [23] 肖薇,刘寿东,李旭辉,等. 大型浅水湖泊与大气之间的动量和水热交换系数——以太湖为例[J]. 湖泊科学, 2012, 24(6):932-942. [24] 陈永利,赵永平,张必成,等. 海上不同高度风速换算关系的研究[J]. 海洋科学, 1989, 13(3):27-31.
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