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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >SNR-based multipath error correction for GPS differential phase
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SNR-based multipath error correction for GPS differential phase

机译:GPS差分相位的基于SNR的多径误差校正

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Carrier phase multipath is currently the limiting error source for high precision Global Positioning System (GPS) applications such as attitude determination and short baseline surveying. Multipath is the corruption of the direct GPS signal by one or more signals reflected from the local surroundings. Multipath reflections affect both the carrier phase measured by the receiver and signal-to-noise ratio (SNR). A technique is described which uses the SNR information to correct multipath errors in differential phase observations. The potential of the technique to reduce multipath to almost the level of receiver noise was demonstrated in simulations. The effectiveness on real data was demonstrated with controlled static experiments. Small errors remained, predominantly from high frequency multipath. The low frequency multipath was virtually eliminated. The remaining high frequency receiver noise can be easily removed by smoothing or Kalman filtering.
机译:当前,载波相位多径是高精度全球定位系统(GPS)应用(例如姿态确定和短基线测量)的限制误差源。多径是指直接GPS信号被本地环境反射的一个或多个信号所破坏。多径反射会影响接收机测量的载波相位和信噪比(SNR)。描述了一种使用SNR信息校正相位差观测中的多径误差的技术。在仿真中证明了该技术将多径降低到几乎接收机噪声水平的潜力。受控静态实验证明了对真实数据的有效性。仍然存在小错误,主要是高频多径引起的。实际上消除了低频多径。剩余的高频接收机噪声可以通过平滑或卡尔曼滤波轻松去除。

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