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A Floating Vertical TEC Ionosphere Delay Correction Algorithm for Single Frequency GPS Receivers

机译:单频GPS接收器浮动垂直TEC电离层延迟校正算法

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This paper presents an innovative method to mitigate ionosphere delay error for single frequency receivers. Traditional approach to ionosphere delay correction is carried out through modeling the total electron content (TEC) along each satellite signal path. Because of the large deviation of the TEC during different times of the day, season, and solar1 cycle from any mean measurements, the ionosphere delay error has always been the dominant error factor in signal frequency receivers,. In our method, we allow a reference vertical TEC to "float" or to remain as an unknown in the range equation. The TEC along each satellite signal path is modeled as having its own vertical TEC whose major component is the reference vertical TEC with additional contributions from the TEC spatial derivatives The TEC spatial derivatives can be modeled using existing ionosphere models, services that provide ionosphere measurements, or even better, the ionosphere correction algorithm (ICA) coefficients which are part of the navigation message. By having the reference vertical TEC as an additional unknown in the range equations, a minimum of five satellites is required to obtain the receiver position. As a byproduct of the range equation solution, we also solve for the reference vertical TEC which can be a convenient and inexpensive way to provide information on the ionosphere. The paper describes the detailed algorithm and simulation studies that demonstrate order of magnitude improvement in ionosphere error correction using this method over the conventional method.
机译:本文提出了一种创新方法,用于减轻单频接收器的电离层延迟误差。通过在每个卫星信号路径沿着每个卫星信号路径建模总电子含量(TEC)进行传统的电离延迟校正。由于TEC在当天的不同时间偏差,季节和太阳能1周期从任何平均测量开始时,电离层延迟误差始终是信号频率接收器中的主要误差因子。在我们的方法中,我们允许参考垂直TEC到“浮动”或保持范围方程中的未知。沿着每个卫星信号路径的TEC被建模为具有自己的垂直TEC,其主要组件是具有来自TEC空间衍生物的附加贡献的主要组件,可以使用现有的电离层模型来建模TEC空间衍生物,提供离子层测量的服务,或甚至更好,是作为导航消息的一部分的电离层校正算法(ICA)系数。通过将参考垂直TEC作为范围方程中的附加未知,需要至少五个卫星来获得接收器位置。作为范围方程解决方案的副产品,我们还解决了参考垂直TEC,其可以是提供关于电离层的信息的方便且廉价的方式。本文介绍了使用该方法在传统方法中使用该方法展示电离层误差校正的大小改善顺序的详细算法和仿真研究。

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