使用零长度基线进行时间转移的低成本 GNSS 接收机比较

IF 1 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION
Marek Doršic
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引用次数: 0

摘要

报告对低成本单频和双频全球导航卫星系统(GNSS)接收器授时模块进行了比较,重点是它们在时间转移应用中的适用性。研究采用零长度基线测量方法来评估它们的性能,并强调了双频接收器的优势。研究分析了这些低成本设备与参考接收器之间的时钟比较残差。结果特别表明,使用超过 200 秒的平均值可以有效减轻定时模块每秒脉冲输出中固有的量化误差。结果显示,参考接收器和双频定时模块之间存在亚纳秒级的时间偏差不稳定性。相比之下,单频模块在一天平均间隔内的时间偏差为 3.3ns。这项研究为选择和利用全球导航卫星系统授时模块进行时间转移应用提供了启示,在需要中等精度的应用中,这类模块可作为具有吸引力和成本效益的替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Low-Cost GNSS Receivers for Time Transfer using Zero-Length Baseline
A comparison between low-cost single-frequency and dual-frequency Global Navigation Satellite System (GNSS) receiver timing modules is presented, focusing on their suitability for time transfer applications. The study uses a zero-length baseline measurement approach to assess their performance and highlights the advantages of dual-frequency receivers. The clock comparison residuals between these low-cost devices and a reference receiver are analyzed. In particular, it is shown that the use of averages longer than 200s can effectively mitigate the quantization error inherent in pulse per second outputs of the timing modules. The results showcase sub-nanosecond time deviation instabilities between the reference receiver and the dual-frequency timing module. In contrast, the single-frequency module exhibits time deviations of 3.3ns at a one-day averaging interval. This research provides insights into the selection and utilization of GNSS timing modules for time transfer applications, where such modules can serve as attractive, cost-effective alternatives for applications requiring moderate accuracy.
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来源期刊
Measurement Science Review
Measurement Science Review INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.00
自引率
11.10%
发文量
37
审稿时长
4.8 months
期刊介绍: - theory of measurement - mathematical processing of measured data - measurement uncertainty minimisation - statistical methods in data evaluation and modelling - measurement as an interdisciplinary activity - measurement science in education - medical imaging methods, image processing - biosignal measurement, processing and analysis - model based biomeasurements - neural networks in biomeasurement - telemeasurement in biomedicine - measurement in nanomedicine - measurement of basic physical quantities - magnetic and electric fields measurements - measurement of geometrical and mechanical quantities - optical measuring methods - electromagnetic compatibility - measurement in material science
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