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Theoretical Analysis and Reconstruction Algorithm for Intermittent Carrier Observations on Low-Power Mobile Devices

机译:低功耗移动设备间歇载波观测的理论分析与重构算法

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This paper focuses on the impact of the duty cycle mode in low-power GNSS chipset on the carrier phase observations. The equivalence of duty cycle mode in power management and intermittent signal processing is first discussed. Then, three methods of analyzing the characteristics of intermittent carrier phase measurements are summarized, and the duty-cycle tracking model is proposed on the basis of continuous tracking model. Subsequently, the underlying causes of continuous loss of cycles in duty cycle mode are described in detail. The following part proposes a carrier reconstruction algorithm based on Doppler resampling and gives several evaluation criteria for reconstruction performance. The experimental results show that the reconstructed carrier measurements improve the accuracy of both the estimations of integer ambiguities and the static solutions, avoiding the error accumulation caused by the raw carrier phase observations. This work systematically discusses the feasibility of reconstructing intermittent carrier phase measurements, which is important for achieving high precision based on low-cost mobile devices.
机译:本文重点介绍占空比模式在低功耗GNSS芯片组上的影响载波相位观察。首先讨论了电源管理和间歇性信号处理中的占空比模式的等价性。然后,总结了三种分析间歇载波相位测量特性的方法,并且基于连续跟踪模型提出了占空比跟踪模型。随后,详细描述了以占空比模式连续损失连续损失的根本原因。以下部分提出了一种基于多普勒重新采样的载波重建算法,并为重建性能提供了几种评估标准。实验结果表明,重建的载波测量提高了整数歧义和静态解决方案的估计的准确性,避免了原始载波相位观察引起的误差累积。这项工作系统地讨论了重建间歇式载波相位测量的可行性,这对于基于低成本移动设备实现高精度是重要的。

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