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      Design of a Fully Reconfigurable Multi-Constellation and Multi-Frequency GNSS Signal Generator

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      https://www.riss.kr/link?id=A108746711

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      다국어 초록 (Multilingual Abstract)

      This paper presents a multi-frequency and multi-constellation Global Navigation Satellite System (GNSS) signal generator that simulates intermediate frequency level digital signal samples for testing GNSS receivers. GNSS signal generators are ideally suited for testing the performance of GNSS receivers and algorithms under development in the laboratory for specific user locations and environments. The proposed GNSS signal generator features a fully-reconfigurable structure with the ability to adjust signal parameters, which is beneficial to generate desired signal characteristics for multiple scenarios including multiconstellation and frequencies. Successful signal acquisition, tracking, and navigation are demonstrated on a verified Software Defined Radio (SDR) in this study. This work has implications for future studies and advances the research and development of new GNSS signals.
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      This paper presents a multi-frequency and multi-constellation Global Navigation Satellite System (GNSS) signal generator that simulates intermediate frequency level digital signal samples for testing GNSS receivers. GNSS signal generators are ideally ...

      This paper presents a multi-frequency and multi-constellation Global Navigation Satellite System (GNSS) signal generator that simulates intermediate frequency level digital signal samples for testing GNSS receivers. GNSS signal generators are ideally suited for testing the performance of GNSS receivers and algorithms under development in the laboratory for specific user locations and environments. The proposed GNSS signal generator features a fully-reconfigurable structure with the ability to adjust signal parameters, which is beneficial to generate desired signal characteristics for multiple scenarios including multiconstellation and frequencies. Successful signal acquisition, tracking, and navigation are demonstrated on a verified Software Defined Radio (SDR) in this study. This work has implications for future studies and advances the research and development of new GNSS signals.

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      참고문헌 (Reference)

      1 김태희 ; 이재은 ; 이상욱 ; 김재훈 ; 황동환, "위성항법 신호생성 시뮬레이터 구현을 위한 신호생성 알고리즘 연구" 한국항공우주학회 37 (37): 1148-1156, 2009

      2 Kaplan, E. D., "Understanding GPS: Principles and Applications" Artech House Inc 2006

      3 Ministry of Science and ICT, "Korean Satellite Navigation System (KPS) Development Project -Preliminary Feasibility Study Pass"

      4 Dong, L., "Implementation and Verification of a Software-Based IF GPS Signal Simulator" 378-389, 2004

      5 "German Aerospace Centre Institute of Communications and Navigation" NAVSIM

      6 The Navigation Applications and User Services Office of the European Space Agency, "Galileo System Simulation Facility"

      7 Demios Space, "GRANADA Bit-True Simulator"

      8 Joseph, A., "GNSS Solutions: Measuring GNSS Signal Strength" Inside GNSS

      9 Betz, J. W., "Engineering Satellite‐Based Navigation and Timing: Global Navigation Satellite Systems, Signals, and Receivers" John Wiley & Sons, Inc 2015

      10 한가희 ; 원종훈, "Development of MATLAB-based Signal Performance Analysis Software for New RNSS Signal Design" 사단법인 항법시스템학회 8 (8): 139-152, 2019

      1 김태희 ; 이재은 ; 이상욱 ; 김재훈 ; 황동환, "위성항법 신호생성 시뮬레이터 구현을 위한 신호생성 알고리즘 연구" 한국항공우주학회 37 (37): 1148-1156, 2009

      2 Kaplan, E. D., "Understanding GPS: Principles and Applications" Artech House Inc 2006

      3 Ministry of Science and ICT, "Korean Satellite Navigation System (KPS) Development Project -Preliminary Feasibility Study Pass"

      4 Dong, L., "Implementation and Verification of a Software-Based IF GPS Signal Simulator" 378-389, 2004

      5 "German Aerospace Centre Institute of Communications and Navigation" NAVSIM

      6 The Navigation Applications and User Services Office of the European Space Agency, "Galileo System Simulation Facility"

      7 Demios Space, "GRANADA Bit-True Simulator"

      8 Joseph, A., "GNSS Solutions: Measuring GNSS Signal Strength" Inside GNSS

      9 Betz, J. W., "Engineering Satellite‐Based Navigation and Timing: Global Navigation Satellite Systems, Signals, and Receivers" John Wiley & Sons, Inc 2015

      10 한가희 ; 원종훈, "Development of MATLAB-based Signal Performance Analysis Software for New RNSS Signal Design" 사단법인 항법시스템학회 8 (8): 139-152, 2019

      11 신헌 ; 한가희 ; 원종훈, "Development of End-to-end Numerical Simulator for Next Generation GNSS Signal Design" 사단법인 항법시스템학회 8 (8): 153-164, 2019

      12 Foucras, M., "Detailed Analysis of the Impact of the Code Doppler on the Acquisition Performance of New GNSS Signals" 513-524, 2014

      13 Lim, S., "Design of a software-based multi-channel GNSS IF signal generator" 754-758, 2008

      14 송영진 ; 이학범 ; 원종훈, "Design of Multi-Constellation and Multi-Frequency GNSS SDR with Fully Reconfigurable Functionality" 사단법인 항법시스템학회 10 (10): 91-102, 2021

      15 Julien, O., "A Complete Software-Based IF GNSS Signal Generator for Software Receiver Development" 2146-2157, 2004

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