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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Performance analysis of GPS carrier phase observable
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Performance analysis of GPS carrier phase observable

机译:GPS载波相位可观测性能分析

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The accuracy analysis of Global Positioning System (GPS) carrier phase observable measured by a digital GPS receiver is presented. A digital phase-locked loop (DPLL) is modeled to extract the carrier phase of the received signal after a pseudorandom noise (PRN) code synchronization system despreads the received PRN coded signal. Based on phase noise characteristics of the input signal, the following performance of the first, second, and third-order DPLLs is analyzed mathematically: (1) loop stability and transient process; (2) steady-state probability density function (pdf), mean and variance of phase tracking error; (3) carrier phase acquisition performance; and (4) mean time to the first cycle-slipping. The theoretical analysis is verified by Monte Carlo computer simulations. The analysis of the dependency of the phase input noise and receiver design parameters provides with an important reference in designing the carrier phase synchronization system for high accuracy GPS positioning.
机译:提出了数字GPS接收机可测量的全球定位系统(GPS)载波相位的精度分析。在伪随机噪声(PRN)码同步系统对接收的PRN编码信号进行解扩之后,对数字锁相环(DPLL)进行建模以提取接收信号的载波相位。根据输入信号的相位噪声特性,对一阶,二阶和三阶DPLL的以下性能进行数学分析:(1)环路稳定性和瞬态过程; (2)稳态概率密度函数(pdf),相位跟踪误差的均值和方差; (3)载波相位采集性能; (4)第一次滑转的平均时间。理论分析得到了蒙特卡洛计算机仿真的验证。相位输入噪声与接收机设计参数的相关性分析为设计用于高精度GPS定位的载波相位同步系统提供了重要参考。

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