Liu Kai, Guo Xiye, Yang Jun, Li Xiaoyu, Liu Changshui, Tang Yuqiu, Meng Zhijun, Yan Enqi
College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410000, China.
Sensors (Basel). 2020 Oct 30;20(21):6197. doi: 10.3390/s20216197.
Precise single-point positioning using carrier-phase measurements can be provided by the synchronized pseudolite system. The primary task of carrier phase positioning is ambiguity resolution (AR) with rapidity and reliability. As the pseudolite system is usually operated in the dense multipath environment, cycle slips may lead the conventional least-squares ambiguity decorrelation adjustment (LAMBDA) method to incorrect AR. A new AR method based on the idea of the modified ambiguity function approach (MAFA), which is insensitive to the cycle slips, is studied in this paper. To improve the model strength of the MAFA and to eliminate the influence of constant multipath biases on the time-average model in static mode, the kinematic multi-epoch MAFA (kinematic ME-MAFA) algorithm is proposed. A heuristic method for predicting the 'float position' corresponding to every Voronoi cell of the next epoch, making use of Doppler-based velocity information, is implemented to improve the computational efficiency. If the success rate is very close to 1, it is possible to guarantee reliable centimeter-level accuracy positioning without further ambiguity validation. Therefore, a computing method of the success rate for the kinematic ME-MAFA is proposed. Both the numerical simulations and the kinematic experiment demonstrate the feasibility of the new AR algorithm according to its accuracy and reliability. The accuracy of the horizontal positioning solution is better than 1.7 centimeters in our pseudolite system.
同步伪卫星系统可实现基于载波相位测量的精确单点定位。载波相位定位的主要任务是快速可靠地解算整周模糊度(AR)。由于伪卫星系统通常在密集多径环境中运行,周跳可能导致传统的最小二乘模糊度去相关调整(LAMBDA)方法产生错误的整周模糊度解算。本文研究了一种基于改进模糊度函数法(MAFA)思想的新的整周模糊度解算方法,该方法对周跳不敏感。为了提高MAFA的模型强度并消除静态模式下恒定多径偏差对时间平均模型的影响,提出了运动多历元MAFA(运动ME-MAFA)算法。利用基于多普勒的速度信息,实现了一种预测下一历元每个Voronoi单元对应“浮点位置”的启发式方法,以提高计算效率。如果成功率非常接近1,则无需进一步的模糊度验证就可以保证可靠的厘米级精度定位。因此,提出了一种运动ME-MAFA成功率的计算方法。数值模拟和运动实验均根据新的整周模糊度解算算法的精度和可靠性证明了其可行性。在我们的伪卫星系统中,水平定位解的精度优于1.7厘米。