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Software-Based Loran-C Signal Processing

소프트웨어 기반 Loran-C 신호 처리

  • 임준혁 (건국대학교 전자정보통신공학과) ;
  • 임성혁 (건국대학교 전자정보통신공학과) ;
  • 김우현 (서울대학교 전기컴퓨터공학부) ;
  • 지규인 (건국대학교 전자공학과)
  • Published : 2010.02.01

Abstract

With GPS being the primary navigation system, Loran use is in steep decline. However, according to the final report of vulnerability assessment of the transportation infrastructure relying on the global positioning system prepared by the John A. Volpe National Transportation Systems Center, there are current attempts to enhance and re-popularize Loran as a GPS backup system through the characteristic of the ground based low frequency navigation system. To advance the Loran system such as Loran-C modernization and eLoran development, research is definitely needed in the field of Loran-C receiver signal processing as well as Loran-C signal design and the technology of a receiver. We have developed a set of Matlab tools, which implement a software Loran-C receiver that performs the receiver's position determination through the following procedure. The procedure consists of receiving the Loran-C signal, cycle selection, calculation of the TDOA and range, and receiver's position determination through the Least Square Method. We experiences the effect of an incorrect cycle selection and various error factors (ECD, ASF, sky wave, CRI, etc.) from the result of the Loran-C signal processing. It is apparent that researches which focus on the elimination and mitigation of various error factors need to be investigated on a software Loran-C receiver. These aspects will be explored in further work through the method such as PLL and Kalman filtering.

Keywords

References

  1. 구자헌, 강광원, 안영은, 한승조, 박종안, "위성항법시스템(GPS)의 이용불능을 대비한 Loran-C 활용과 위치오차 개선," 한국항행학회 논문지, 제11권 제1호, pp. 1-8, 2007.
  2. G. Offermans and A. Helwig, Integrated Navigation System Eurofix -Vision, Concept, Design, Implementation & Test, Delft University of Technology, Delft, Oct. 2003.
  3. W. J. Pelgrum, New Potential of Low-Frequency Radionavigation in the 21st Century, 1st Ed, Delft, Nov. 2006.
  4. United States Coast Guard, Specification of the Transmitted Loran-C Signal, 1994.
  5. The LFPG-eh Group, "Final Report LORAN Project," Apr. 2007.
  6. A. J. Fisher, "Loran-C Cycle Identification in Hard-Limiting Receivers," IEEE Transactions on Aerospace and Electronic Systems, vol. 36, no. 1, pp. 290-297, Jan. 2000. https://doi.org/10.1109/7.826332
  7. 임준혁, 임성혁, 김우현, 지규인, "소프트웨어 기반 Loran-C 신호 생성 및 처리," 한국자동제어학술회의(KACC 2009), 부산, 한국, 2009.