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Vertical scaling optimization algorithm for a fractal interpolation model of time offsets prediction in navigation systems

机译:导航系统中的时间抵消预测分形插值模型的垂直缩放优化算法

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System time offsets between Global Navigation Satellite Systems is a key issue in multisystem positioning. A high-precision time offsets prediction model is required in actual navigation applications. In this study, the fractal characteristics of time offsets in American and Russian navigation systems are directly confirmed through fractal dimension calculations. Then, the influence of the vertical scaling factor on the prediction accuracy of the fractal interpolation prediction model is confirmed. It is found that perturbation on the estimated vertical scaling factor causes a minimal attractor bias, which is positively correlated with the prediction error. After proving the existence of the estimated vertical scaling factor of the minimal attractor biases, an optimization method of the fractal interpolation prediction model is proposed, and the related algorithms are given. The numerical results show that the time offsets prediction errors using the new model are less than 1 ns for the American navigation system and close to 2 ns for the Russian navigation system. The prediction accuracy of this model has an improvement of at least 60% over the commonly used quadratic and grey models, and an improvement of more than 13% over the standard fractal interpolation prediction model.
机译:全局导航卫星系统之间的系统时间偏移是多系统定位的关键问题。在实际导航应用中需要高精度时间抵消预测模型。在这项研究中,通过分形尺寸计算直接确认了美国和俄罗斯导航系统中的时间偏移的分形特征。然后,确认了垂直缩放因子对分形插值预测模型的预测准确性的影响。发现估计的垂直缩放因子的扰动导致最小的吸引子偏置,这与预测误差呈正相关。在证明最小吸引子偏置的估计垂直缩放因子的存在之后,提出了分形插值预测模型的优化方法,并给出了相关算法。数值结果表明,使用新模型的时间抵消预测误差为美国导航系统的预测误差小于1 ns,俄罗斯导航系统接近2 ns。该模型的预测精度在常用的二次和灰色模型上具有至少60%的增长,并且在标准分形插值预测模型上的提高超过13%。

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