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Development of Effective Test Method for Positioning Accuracy of Armed Vehicle Inertial Navigation System

기동화력장비 관성항법장치의 효과적인 위치정확도 시험방법 개발

  • Kim, Sung Hoon (Land Systems Center, Defense Agency for Technology and Quality) ;
  • Bae, In Hwa (Dept. of Industrial and Systems Engineering, Changwon National University) ;
  • Kim, Sang Boo (Dept. of Industrial and Systems Engineering, Changwon National University)
  • 김성훈 (국방기술품질원 기동화력센터) ;
  • 배인화 (창원대학교 산업시스템공학과) ;
  • 김상부 (창원대학교 산업시스템공학과)
  • Received : 2023.11.05
  • Accepted : 2023.12.04
  • Published : 2023.12.31

Abstract

Purpose: The main function of INS (Inertial Navigation System) is to measure the position of an armed vehicle and its performance is confirmed through the positioning accuracy test of Korean Defense Standards (KDS). The current standards, however, do not provide clear test methods and the conditions for performing positioning accuracy tests. Accordingly, the purpose of this study is to develop a new method for positioning accuracy test which would be effective. Methods: In this study, a new INS positioning accuracy test method is suggested based on the analysis of test data collected through a statistical experiment known as central composite design. For the positioning accuracy experiment of K105A1, a self-propelled artillery, two factors of driving velocity and driving distance are considered. Results: Based on the analysis of experimental data, a regression model for the positioning error is fitted and the positioning accuracy test of INS is so developed to maximize the positioning error. The standard proximity rate is used as an additional test criterion to evaluate the performance level of INS. Conclusion: The proposed new positioning accuracy test for INS has the advantage of finding the nonconforming items effectively. It is also expected to be utilized for the other similar INS positioning accuracy tests.

Keywords

References

  1. Baek, Suhyun, Oh, Byunghoon, Kang, Woongki, Tae, Jinsoo, & Heo, Sungjae. 2016. An Optimal Study for INS Position Performance in Aircraft Verification Test. Proceeding of the Society for Aerospace System, Spring Conference. 
  2. Choi, Jinyoung, Kim, Youngchang, Oh, Jintae, & Kim, Kiyoung. 2021. Improvement of Consensus Quality for PoN Blockchain. Journal of Korean Society for Quality Management 49(4):527-537. 
  3. Choi, Rammi, Cha, Jaehyuk, Park, Changuk, Cho, Sungyoon, & Cho, Minsu. 2023. Analysis on Navigation Error Characteristics of 16-Rotation Schemes for Dual Axis Rotational Inertial Navigation System against Gyro Error Sources. Journal of Institute of Control, Robotics and Systems 38:795-796. 
  4. Kang, Daeho. Woo, Yoonhwan. & Cha, Kiup. 2012. Barrel Rifling Shape Optimization by Using Design of Experiment Approach. Journal of the Korean Society of Mechanical Engineers 36(8):897-904.  https://doi.org/10.3795/KSME-A.2012.36.8.897
  5. Kim, Cheonjoong, Yu, Haesung. Lee, Inseop, Oh, Juhyun, & Lee, Sangjeong. 2018. A Study on Error Analysis of Dual-Axis Rotational Inertial Navigation System Based on Ring Laser Gyroscope. Journal of the Korean Society for Aeronautical and Space Sciences 46(11):921-933.  https://doi.org/10.5139/JKSAS.2018.46.11.921
  6. Kim, Youngsuk, & Chang, Keunsung. 2015. Impact Toughness Improvement of an Undercarriage Track Shoe Using the Taguchi Orthogonal Array Experiment. Journal of the Korea Academia-Industrial Cooperatioon Society 16(3):1611-1619.  https://doi.org/10.5762/KAIS.2015.16.3.1611
  7. Ko, Donghyeon, Moon, Taesang, & Kim, Hyoungwoo. 2020. A Research on Test Method Design and Evaluation of Valves Used for the Localization Development in Self-Propelled Artillery. Journal of Defense Quality Society 3(2):15-23. 
  8. Korean Defense Standard 2350-4012. K105A1 Self-Propelled Howitzer. 
  9. Montgomery, D. C. 2020. Design and Analysis of Experiments. Wiley. 
  10. Nam, Yoonwook, Kim, Byunghyun, Kim, Sunghoon, Noh, Sangwan, Park, Youngmin, & Kim Byunguk. 2020. A Study on Optimal Design Method to Prevent Moisture for Combat Vehicle. Journal of the Korean Society of Mechanical Technology 22(5):971-976. 
  11. Park, Chanyoung, & Cho, Chongdu. 2018. Effect of Protection Design Parameters on Mine Blast Impact Characteristics. Journal of the Koreans Society for Precision Engineering 35(5):521-529.  https://doi.org/10.7736/KSPE.2018.35.5.521
  12. TALIN Series Product Catalog. 2020. Honeywell Aerospace. 
  13. Yu, Haesung, Lee, Inseop, Oh, Juhyun, Kim, Cheonjoong, & Park, Heungwon. 2015, Design and Evaluation of INS Initial Alignment under Vibration Environment of Aircraft Run-up. Journal of Institute of Control Robotics and Systems 18(1):691-698.  https://doi.org/10.5302/J.ICROS.2015.15.0024
  14. Yun, Sunghyun, Baek, Hyunmoo, Park, Dongmin, & Oh, Dongkyo. 2023, Quality Improvement to Prevent Shifting Error of Tracked Vehicles. Journal of Korean Society for Quality Management 51(2):297-313. https://doi.org/10.7469/JKSQM.2023.51.2.297