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Reexamining Low-Latitude Ionospheric Error Bounds: An SBAS Approach for Brazil

机译:重新审视低纬度电离层错误界限:巴西的SBA方法

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摘要

The ionosphere in low-latitude regions is a major challenge for a satellite-based augmentation system (SBAS). The intense dynamics of this layer of the atmosphere in this part of the globe is one of the main reasons why Brazil discarded years ago the idea of deploying its own SBAS. In this article, we re-examine the ionospheric error bounds for a high-density ground station network in Brazil by updating previous work that assessed specific parameters for low latitudes, especially the ones related to the generation of the ionospheric error bounds expressed by the grid ionospheric vertical error (GIVE). Ionospheric delay maps and their respective GIVE values were generated by varying the functional model used in the interpolation of the grid points and the decorrelation parameter of the measurements for quiet and active days of the ionosphere. The resulting GIVE maps show values significantly higher than the bounds found in mid-latitudes and represent one of the main contributions of this article. An availability assessment for APV-I shows that the planar fit model with a spatial decorrelation standard deviation of 1 m provides the best availability for quiet days, while a quadratic fit with a decorrelation parameter of 2 m results in better availability for active days. Even though it would be possible to provide some service in quiet days within the area with a higher density of reference stations, the resulting availability is not ideal for a real SBAS when the ionosphere is more active.
机译:低纬度地区的电离层是卫星增强系统(SBA)的主要挑战。这一部分在全球这一部分的大气层的强烈动态是巴西丢弃年前的主要原因之一是部署自己的SBA的想法。在本文中,我们通过更新以前的工作来重新检查巴西的高密度接地站网络的电离层误差界限,这些工作评估了对低纬度的特定参数,尤其是与电网表示的电离层误差界相关的那些电离层垂直误差(给)。通过改变网格点内插的功能模型和电离层的安静和活性天的测量的去相关参数来产生电离层延迟图和它们各自的给出值。由此产生的图表显示值明显高于中纬度所发现的界限,并代表本文的主要贡献之一。 APV-I的可用性评估显示,具有1米的空间去相关性标准偏差的平面拟合模型提供了安静的日子的最佳可用性,而具有2米的脱纸参数的二次配合导致有效天的更好可用性。尽管可以在具有较高的参考站密度的区域内的安静日内提供一些服务,但是当电离层更活跃时,所得到的可用性对于真正的SBA不理想。

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