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首页> 外文期刊>International journal of navigation and observation >Optimized Carrier Tracking Loop Design for Real-Time High-Dynamics GNSS Receivers
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Optimized Carrier Tracking Loop Design for Real-Time High-Dynamics GNSS Receivers

机译:实时高动态GNSS接收器的优化的载波跟踪环路设计

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摘要

Carrier phase estimation in real-time Global Navigation Satellite System (GNSS) receivers is usually performed by tracking loops due to their very low computational complexity. We show that a careful design of these loops allows them to operate properly in high-dynamics environments, that is, accelerations up to 40 g or more. Their phase and frequency discriminators and loop filter are derived considering the digital nature of the loop inputs. Based on these ideas, we propose a new loop structure named Unambiguous Frequency-Aided Phase-Locked Loop (UFA-PLL). In terms of tracking capacity and noise resistance UFA-PLL has the same advantages of frequently used coupled-loop schemes, but it is simpler to design and to implement. Moreover, it can keep phase lock in situations where other loops cannot. The loop design is completed selecting the correlation time and loop bandwidth that minimize the pull-out probability, without relying on typical rules of thumb. Optimal and efficient ways to smooth the phase estimates are also presented. Hence, high-quality phase measurements—usually exploited in offline and quasistatic applications—become practical for real-time and high-dynamics receivers. Experiments with fixed-point implementations of the proposed loops and actual radio signals are also shown.
机译:实时全球导航卫星系统(GNSS)接收机中的载波相位估计通常由跟踪环执行,因为它们的计算复杂度非常低。我们表明,精心设计这些回路可以使它们在高动力环境下正常运行,即加速度高达40μg或更高。考虑到环路输入的数字特性,推导了它们的相位和频率鉴别器以及环路滤波器。基于这些想法,我们提出了一种新的环路结构,称为明确频率辅助锁相环(UFA-PLL)。在跟踪容量和抗噪声性方面,UFA-PLL具有与常用耦合环路方案相同的优点,但设计和实现起来更简单。此外,它可以在其他循环无法实现的情况下保持锁相。完成环路设计,选择相关时间和环路带宽,以最大程度地降低拉出概率,而无需依赖通常的经验法则。还提出了优化和有效的方法来平滑相位估计。因此,通常在离线和准静态应用中使用的高质量相位测量对实时和高动态接收器变得实用。还显示了使用建议的环路的定点实现和实际无线电信号进行的实验。

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