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Chapter 5 Theoretical Study of Bare Soil Parameters' Effects on GPS Multipath Observables

机译:第五章裸土参数对GPS多径观测值影响的理论研究

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In the past two decades, GNSS-R has emerged as a new and attractive remote sensing technique. The geodetic/geophysical GPS receivers are out-of commercial and their recorded multipath observables have potentials for geophysical parameters detections, e.g. soil moisture, vegetation growth and snow depth. Based on the developed forward GPS multipath model, effects of bare soil parameters on GPS multipath observations are evaluated here. Wave synthesis technique is employed to get the coherent scattering coefficients at VV, HH, RR and LR polarizations, while the bare soil dielectric constant is calculated by a microwave dielectric soil-water mixing model. Effects of three-frequencies GPS modulations (L1 band, L2 band and L5 band) are evaluated: although there are apparent differences for GPS multipath observables, it is not the effects of bare soil but the direct broadcasting signals since soil scattering properties at these frequencies (L band) are the same. Soil texture and surface roughness have almost no effects on GPS observables. As the soil temperature changes from SubZero to above zero, the amplitudes of SNR, phase and code pseudorange increased. Soil moisture also affects GPS observables, as moisture content increases, the amplitudes of GPS observables increase.
机译:在过去的二十年中,GNSS-R已经成为一种崭新的,有吸引力的遥感技术。大地测量/地球物理GPS接收器已经停产,其记录的多径观测值具有探测地球物理参数的潜力,例如土壤湿度,植被生长和积雪深度。基于已开发的正向GPS多路径模型,此处评估了裸土参数对GPS多路径观测的影响。利用波合成技术获得了在VV,HH,RR和LR极化时的相干散射系数,而裸土介电常数是通过微波介电土-水混合模型计算得到的。评估了三频GPS调制(L1,L2和L5频段)的影响:尽管GPS多径观测值存在明显差异,但这不是裸土的影响,而是直接广播信号,因为在这些频率下土壤的散射特性(L波段)是相同的。土壤质地和表面粗糙度对GPS观测值几乎没有影响。随着土壤温度从SubZero变为零以上,SNR,相位和编码伪距的幅度增加。土壤水分也影响GPS观测值,随着水分含量的增加,GPS观测值的幅度也会增加。

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