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Robust and Precise Position Determination for Vehicles Using GPS Carrier Phase Measurements

机译:使用GPS载波相位测量的车辆的鲁棒和精确的位置确定

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An algorithm for resolving the GPS integer ambiguity is introduced. This algorithm is called the Improved Multiple-Hypothesis Wald Sequential Probability Ratio Test (IMHWSPRT) and is based on a log formulation of the Multiple-Hypothesis Wald Sequential Probability Ratio Test (MHWSPRT). In this method the dynamic information is used as constraint It speeds up the resolution convergence time of the integer ambiguity of GPS carrier phase measurements. It is known that the improvement of convergence speed of the MHWSPRT is due to the increase the probability ratio with the use of the dynamic information constraint. The dynamic information make the state error covariance small, it helps to speed up the resolution convergence time. But this method has weakness when the system model has faults. It is possible to reduce the effect of the faults by using the null matrix of the measurement model matrix. It is shown that IMHWSPRT is robust with the system model faults. The performance of IMHWSPRT is demonstrated using numerical simulations.
机译:引入了解决GPS整数模糊的算法。该算法称为改进的多假设沃尔德顺序概率比率测试(IMHWSPRT),并且基于多假设WALD顺序概率比率测试(MHWSPRT)的日志制作。在该方法中,动态信息用作约束,它速度加速GPS载波相位测量的整数模糊的分辨率收敛时间。众所周知,MHWSPRT的收敛速度的提高是由于使用动态信息约束的概率比增加。动态信息使状态错误协方差小,它有助于加快分辨率的收敛时间。但是当系统模型具有故障时,此方法具有弱点。可以使用测量模型矩阵的空矩阵来降低故障的效果。结果表明,IMHWSPRT具有系统模型故障的强大。使用数值模拟来证明IMHWSPRT的性能。

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