High-Precision Digital Clock Steering Method Based on Discrete Σ-Δ Modulation for GNSS

Author:

Liu Mingkai1ORCID,Meng Zhijun1,Yan Enqi1,Liu Suyang1,Lv Yinhong1,Guo Xiye1,Yang Jun1

Affiliation:

1. College of Intelligent Science and Technology, National University of Defense Technology (NUDT), Changsha 410073, China

Abstract

A high-precision time reference is fundamental to the positioning, navigation, and timing (PNT) of global navigation satellite systems (GNSS). The precision of clock steering determines the accuracy of practical applications that rely on the time–frequency reference. With the invention of direct digital synthesizer (DDS) technology, digital clock steering (DCS) has gradually become a mainstream technology. However, the key factor limiting DCS accuracy is the system quantization noise, which leads to a low frequency and phase adjustment accuracy. Here we propose a DCS method based on Σ-Δ modulation to address the issue of low resolution of DAC through shaping the quantization noise. A simulated GNSS time–frequency reference system experimental platform is constructed to validate the effectiveness of the proposed method. The experimental results demonstrate that this method achieves a phase adjustment accuracy of 0.48 ps and a frequency adjustment accuracy better than 0.48 pHz, which is two orders of magnitude higher than that of existing GNSS time–frequency reference systems. Thus, the proposed method offers a significant improvement in time–frequency reference systems, leading to better performance, reliability, and accuracy in a wide range of practical applications.

Publisher

MDPI AG

Reference21 articles.

1. Precise time scales and navigation systems: Mutual benefits of timekeeping and positioning;Tavella;Satell. Navig.,2020

2. Guo, Y., Li, Z., Gong, H., Peng, J., and Ou, G. (2024). Time–Frequency Signal Integrity Monitoring Algorithm Based on Temperature Compensation Frequency Bias Combination Model. Remote Sens., 16.

3. Petzinger, J., Reith, R., and Dass, T. (2002, January 3–5). Enhancements to the GPS block IIR timekeeping system. Proceedings of the 34th Annual Precise Time and Time Interval Systems and Applications Meeting, Reston, VA, USA.

4. Felbach, D., Heimbuerger, D., Herre, P., and Rastetter, P. (2003, January 4–8). Galileo payload 10.23 MHz master clock generation with a Clock Monitoring and Control Unit (CMCU). Proceedings of the IEEE International Frequency Control Sympposium and PDA Exhibition Jointly with the 17th European Frequency and Time Forum, Tampa, FL, USA.

5. General Design of the Third Generation BeiDou Navigation Satellite System;Chen;J. Nanjing Univ. Aeronaut. Astronaut.,2020

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