...
首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Incoherent Range Walk Compensation for Spaceborne GNSS-R Imaging
【24h】

Incoherent Range Walk Compensation for Spaceborne GNSS-R Imaging

机译:星载GNSS-R成像的非相干距离游走补偿

获取原文
获取原文并翻译 | 示例
           

摘要

Global navigation satellite system reflectometry (GNSS-R) receivers produce delay-Doppler maps (DDMs) by incoherently integrating coherent integration results. Due to system dynamics, during incoherent integration, the receiver aligns each coherent result by tracking the delay and Doppler of the specular point. This is known to cause a blurring of the spatial footprint of the Woodward ambiguity function (WAF) on the reflecting surface. In this paper, we demonstrate that the blurring of the WAF varies over the glistening zone (GZ), and even if a fixed point on the ground is tracked, blurring still occurs. We derive the expressions for the delay and Doppler change rates over the GZ and then predict the error introduced by range walk for typical GNSS-R scatterometry configurations. We find that approximate to 6 dB of loss is expected for a point scatterer near the edge of the GZ when a fixed point on the surface is tracked. The incoherent range walk compensation (IRWC) method is then presented for GNSS-R receivers to mitigate this loss. The IRWC method focuses the power in the DDM to the isodelay and iso-Doppler configuration occurring at the midpoint of the integration time. DDMs produced by tracking a fixed point with and without IRWC are simulated, and errors are found to be in agreement with those predicted. Spatial domain GNSS-R products will be improved with IRWC. Target detection will benefit from a larger usable swath, allowing longer tracking and detection times as a result of the increased target to clutter and noise ratio. At the same time, imaging applications will no longer suffer from a spatially variant blurring of the WAF, which limits the resolution of the estimated products. IRWC is shown to mitigate the range migration losses and improve the SNR of an imaging GNSS-R receiver by approximate to 6 dB near the edge of the GZ.
机译:全球导航卫星系统反射法(GNSS-R)接收器通过非相干地整合相干积分结果来生成延迟多普勒地图(DDM)。由于系统动力学的原因,在非相干积分期间,接收器通过跟踪镜面反射点的延迟和多普勒来调整每个相干结果。已知这会导致伍德沃德模糊函数(WAF)在反射面上的空间足迹模糊。在本文中,我们证明了WAF的模糊在闪耀区域(GZ)上会发生变化,即使跟踪地面上的固定点,仍然会发生模糊。我们导出了GZ上的延迟和多普勒变化率的表达式,然后预测了针对典型GNSS-R散射测量配置的距离游走所引入的误差。我们发现,当跟踪表面上的固定点时,对于GZ边缘附近的点散射体,预计会有大约6 dB的损耗。然后针对GNSS-R接收机提出了非相干距离漫游补偿(IRWC)方法,以减轻这种损失。 IRWC方法将DDM中的功率集中在积分时间的中点处的等值线和等多普勒配置。模拟了通过跟踪带有和不带有IRWC的固定点而生成的DDM,并且发现误差与预测的误差一致。 IRWC将改进空间域GNSS-R产品。目标检测将受益于更大的可用覆盖范围,由于增加了目标杂波和噪声比,因此允许更长的跟踪和检测时间。同时,成像应用将不再遭受WAF的空间变化模糊,这会限制估计产品的分辨率。已显示IRWC可以减轻距离偏移损失,并在GZ边缘附近将成像GNSS-R接收器的SNR提高约6 dB。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号