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Neural Network Assisted Vector Tracking Loop for Bridging GPS Signal Outages

机译:用于桥接GPS信号停电的神经网络辅助矢量跟踪环

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Signal blockage and reflections from buildings and other large, solid objects can lead to accuracy degradation. One of the merits of the Global Positioning System (GPS) vector tracking loop (VTL) architectures is that the tracking loop can be assisted in such degraded signal environments. This paper proposes the incorporation of the neural network (NN) into the VTL for improving the positioning quality. The NN is used to bridge the GPS signal and prevent the error growth due to signal outage from spreading into the entire tracking loop. The NNs are employed for predicting adequate numerical control oscillator (NCO) inputs, i.e., providing better prediction of residuals for the Doppler frequency and code phase in order to maintain regular operation of the navigation system. The NN-assisted VTL demonstrates the capability to ensure proper functioning of navigation system. Results show that the NN-assisted VTL can effectively provide improved performance during degraded signal environments such as GPS outages.
机译:信号堵塞和建筑物的反射和其他大型固体物体可以导致精度下降。全球定位系统(GPS)矢量跟踪环(VTL)架构的一个优点是可以在这种降级的信号环境中辅助跟踪环路。本文提出了将神经网络(NN)结合到VTL中以改善定位质量。 NN用于桥接GPS信号并防止由于信号中停用扩散到整个跟踪环路而导致的误差生长。 NNS用于预测足够的数控振荡器(NCO)输入,即,为多普勒频率和代码相的剩余物提供更好地预测,以便维持导航系统的常规操作。 NN辅助VTL展示了确保对导航系统正常运行的能力。结果表明,NN辅助VTL可以有效地在降级的信号环境中有效地提供改进的性能,例如GPS中断。

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