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Published on: March 6, 2014
A Two-Stage Kalman Filter-Based Carrier Tracking Loop for Weak GNSS Signals.
Yan Cheng1, Qing Chang2, Hao Wang3
1School of Electronic and Information Engineering, Beihang University, Beijing 100191, China. chengyan@buaa.edu.cn.
A new two-stage Kalman filter (KF) tracking architecture improves global navigation satellite system (GNSS) receivers. This method enhances tracking sensitivity for weaker signals and achieves faster convergence compared to standard KF tracking.
Area of Science:
- Signal Processing
- Navigation Systems
- Aerospace Engineering
Background:
- Kalman filter (KF)-based tracking loops offer superior sensitivity and robustness for Global Navigation Satellite System (GNSS) receivers over conventional methods.
- Improving tracking sensitivity requires longer coherent integration times, which are limited by navigation data bit sign transitions.
- Standard KF receivers initialized with acquired data struggle to converge rapidly under weak signal conditions due to frequency errors.
Purpose of the Study:
- To propose a novel two-stage KF-based tracking architecture for GNSS receivers.
- To enhance tracking sensitivity for weaker signals and accelerate convergence.
- To overcome limitations of coherent integration time and initial frequency errors in KF tracking.
Main Methods:
- A two-stage architecture comprising coarse tracking and fine tracking stages.
- The first stage refines acquired data and achieves bit synchronization.
- The second stage uses coarse tracking results for KF initialization, extending coherent integration without bit sign transition limitations.
Main Results:
- The proposed two-stage KF architecture successfully tracks weaker GNSS signals.
- It demonstrates improved tracking sensitivity compared to conventional techniques.
- The method shows significantly faster convergence than standard KF-based tracking.
Conclusions:
- The two-stage KF architecture effectively enhances GNSS receiver tracking sensitivity and reduces convergence time.
- This approach overcomes key limitations of standard KF tracking, particularly under weak signal conditions.
- The proposed method offers a more robust and efficient solution for GNSS signal tracking.
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