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A Study on the Test and Evaluation Methodology for the Precise Encountering Scenario between Ammunitions

탄약 간 정밀교전을 위한 시험평가기법 연구

  • Ha, Jongsoo (The 4th Research and Development Institute, Agency for Defense Development) ;
  • Park, Youngsik (The 4th Research and Development Institute, Agency for Defense Development) ;
  • Lee, Hanjin (The 4th Research and Development Institute, Agency for Defense Development) ;
  • Kim, Yongjae (The 4th Research and Development Institute, Agency for Defense Development) ;
  • Kwak, Yoon (The 4th Research and Development Institute, Agency for Defense Development) ;
  • Park, Minkyu (The 4th Research and Development Institute, Agency for Defense Development)
  • 하종수 (국방과학연구소 제4기술연구본부) ;
  • 박영식 (국방과학연구소 제4기술연구본부) ;
  • 이한진 (국방과학연구소 제4기술연구본부) ;
  • 김용재 (국방과학연구소 제4기술연구본부) ;
  • 곽윤 (국방과학연구소 제4기술연구본부) ;
  • 박민규 (국방과학연구소 제4기술연구본부)
  • Received : 2018.04.02
  • Accepted : 2018.11.16
  • Published : 2018.12.05

Abstract

This paper proposes an improved test and evaluation methodology to be conducted for a in-flight threat-countermeasure encounter scenario. Although the conventional test method adopted in the precedent researches allows high precision and safety, such full-scale method is practically not appropriate to apply to small-scale test rounds for evaluating the subparts of the ammunition. To address this problem, this study suggests a readily-applicable, small-scale test and evaluation method of the subpart of the ammunition in firing test. In the threat-countermeasure encounter scenario, the results of several tests demonstrate that the proposed technique does not deteriorate the precision when the engagement point should be adjusted.

Keywords

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Fig. 1. Layout of the test equipment of ‘A’ defense system

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Fig. 2. Concept of the proposed engagement apparatus

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Fig. 3. Layout of the engagement apparatus

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Fig. 4. Flowchart of the engagement method

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Fig. 5. Engagement of the ammunitions

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Fig. 6. Test procedure

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Fig. 7. Test result of ‘A’ defense system

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Fig. 8. Result of initial parameters

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Fig. 9. Result of compensated parameters

Table 1. Initial & compensated parameters

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References

  1. B. Yoo, G. Hwang, C. Ryu, M. Kim, S. Ye and U. Han, “Systems Engineering based Live Fire Test of Weapon Systems,” Journal of Korean Institute of Electromagnetic Engineering and Science, Vol. 15, No. 1, pp. 28-35, Feb., 2012.
  2. S. Ye and J. Lee, “On Multiple ETA-based Test Framework to Enhance Safety Maturity of Live Fire Tests for Weapon Systems,” Journal of Korea Safety Management & Science, Vol. 17, No. 1, pp. 75-84, Mar, 2015. https://doi.org/10.12812/ksms.2015.17.1.75
  3. J. Ha, E. Lee, H. Lee, G. Park and K. Cho, “Performance Analysis of Missile/Rocket Defense System for RPG-7 Defense of Main Battle Tank,” Journal of the Korea Institute of Military Science and Technology, Vol. 17, No. 3, pp. 350-357, June, 2014. https://doi.org/10.9766/KIMST.2014.17.3.350
  4. J. Ha, S. Park, J. Lee, K. Cho, E. Lee, H. Lee and G. Park, "3D Engagement Analysis Apparatus and Method Thereof," Korean Patent, No. 10-1380790, Mar, 2014.
  5. S. Sun, J. Lee, J. Lee and B. Cho, “Ground-based Radar Interferometer for Tracking Fast Approaching Targets,” IET Radar, Sonar & Navigation, Vol. 5, No. 4, pp. 398-404, Apr., 2011. https://doi.org/10.1049/iet-rsn.2010.0117
  6. J. Ha, J. Roh, J. Choi, H. Lee and Y. Park, “Study on the Compact K-Band Radar for Detecting the Approaching Target above Ground,” Journal of Korean Institute of Electromagnetic Engineering and Science, Vol. 28, No. 4, pp. 309-317, Apr., 2017. https://doi.org/10.5515/KJKIEES.2017.28.4.309
  7. R. Hartley and A. Zisserman, "Multiple View Geometry in Computer Vision," Cambridge University Press, 2003.
  8. Andrew Feickert, "Army and Marine Corps Active Protection System(APS) Efforts," Congressional Research Service, Aug. 30, 2016.
  9. Army Test and Evaluation Command, "Safety Evaluation of Fire Control Systems - Electrical and Electronic Equipment Final Rept. on Test Operations Procedure," Army Test and Evaluation Command, Aberdeen Proving Ground, MD, TOP-3-2-503, 1980.
  10. S. Park and J. Kim, “A Study on the Storage Life Estimation Method for Decrease of Muzzle Velocity using Gamma Process Model,” Journal of Korean Institute of Electromagnetic Engineering and Science, Vol. 16, No. 5, pp. 639-645, Oct., 2013.
  11. S. Yoon, S. Lee, Y. Lee and J. Oh, “A Miniaturized Magnetic Induction Sensor Using Geomagnetism for Turn Count of Small-Caliber Ammunition,” Journal of Sensors, Vol. 2006, No. 6, pp. 712-726, 2006.
  12. P. Kupidura, Z. Leciejewski, Z. Surma and R. Trebinski, "Laboratory Stand for Scale Test of Rocket Propelled Grenades Firing," Proceedings of 26th International Symposium on Ballistics, pp. 736-745, 2011.