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미 군사규격을 적용한 레이더 전력공급용 이동식 컨테이너의 Random Vibration 해석

Random Vibration Analysis of Portable Power Supply Container for Radar With U.S. Military Standards

  • 도재석 (금오공과대학교 기계공학과(항공기계전자융합공학전공)) ;
  • 허장욱 (금오공과대학교 기계공학과(항공기계전자융합공학전공))
  • Do, Jae-Seok (Department of Mechanical Engineering (Department of Aeronautics, Mechanical and Electronic Convergence Engineering of Mechanical Engineering), Kumoh National Institute of Technology) ;
  • Hur, Jang-Wook (Department of Mechanical Engineering (Department of Aeronautics, Mechanical and Electronic Convergence Engineering of Mechanical Engineering), Kumoh National Institute of Technology)
  • 투고 : 2022.02.05
  • 심사 : 2022.07.12
  • 발행 : 2022.09.30

초록

In times of war or emergencies, weapon systems, such as radars, must receive stable power. This can be achieved using improved onboard portable power systems made of steel containers. However, a breakdown can occur in the event of random vibration during transportation via a vehicle or train. Electrical-power shortages or restrictions pose a significant threat to security. In this study, Composite Wheeled Vehicle(CWV) data and rail cargo data with Acceleration Spectral Density(ASD), specified in MIL-STD-810H METHOD 514.8, were interpreted as input data of the three-axis random vibration method using ANSYS 19.2. Modal analysis was performed up to 500 Hz, and deformations in modes 1 to 117 were calculated to utilize all ASD data. The maximum equivalent stress in the three-axis direction was obtained using a random vibration analysis. Similarly, the margin of safety was calculated using the derived equivalent stress and material properties. Overall, the analysis verified that the portable container designed for the power supply system satisfied the required vibration demands.

키워드

과제정보

본 연구는 과학기술정보통신부 및 정보통신기획평가원의 Grand ICT연구센터 사업의 연구결과로 수행되었음(IITP-2022-2020-0-01612).

참고문헌

  1. MIL-STD-810H, "Department of Defense Test Method Standard for Environmental Engineering Considerations and Laboratory Tests", Department of Defense, U.S., 514.8, 2019
  2. Jang, J., Park, J. W., Lim, S. Y., Lee, C. S., and Lee, J. H., "The study on Changes of Vibration Test in MIL-STD-810H", The Korean Reliability Society, pp. 45-53, 2019.
  3. Kown, J. E., Shin, D. W., and Hur, J. W., "Shock Analysis of Mobile Power Supply Container for Radar with MIL-STD-810H", Journal of the Korea Institute of Military Science and Technology, Vol. 24, No. 6, pp. 569-576, 2021. https://doi.org/10.9766/KIMST.2021.24.6.569
  4. Shin, G. H., Hur, J. W., "A Study on the Random Vibration Analysis of Large Scale Antenna", Journal of the Korean Society of Manufacturing Process Engineers, Vol. 20, No. 6, pp. 44-50, 2021 https://doi.org/10.14775/ksmpe.2021.20.06.044
  5. Shin, G. H., Hur, J. W., "A Study on the Shock Analysis of Large Scale Antenna", Journal of the Korean Society of Manufacturing Process Engineers, Vol. 20, No. 6, pp. 26-32, 2021 https://doi.org/10.14775/ksmpe.2021.20.06.026
  6. Jo, M. S., Kim, S. W., "Analysis of Structural Stability and Optical Performance for Optical Equipment During In-flight Vibration", Transactions of the Korean Society of Mechanical Engineers, Vol. 41, No. 9, pp. 897-904, 2017. https://doi.org/10.3795/KSME-A.2017.41.9.897
  7. Shin, D. J., Lee, S. J., Lee, J. H., Kang, K. H., Jin, H. S., Kim, K. S., "Environmental Specification Establishment of Transport Dynamic Property for Large Radar and Durability Analysis", Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 28, No. 5, pp. 600-607, 2018. https://doi.org/10.5050/KSNVE.2018.28.5.600
  8. Kim, H. G., Kim, S. C., Choi, H. K., Hong, S. H., "Random Vibration Analysis of Fuel Pylon for Aircraft", Journal of the Korean Society of Mechanical Engineers, pp. 196, 2021.
  9. Kim, H. G., Kim S. J., Kim, S. C., Kim, T. U., "Structural Analysis of Fasteners in the Aircraft Structure of the High-Altitude Long-Endurance UAV", Journal of the Aerospace System Engineering, Vol. 12, No. 1, pp. 35-41, 2018.
  10. Shin, D. J., Lee, J. H., Kang, Y. S., "Development Process of Mechanical Structure for a Large Radar", Journal of the Korea Institute of Military Science and Technology, Vol. 20, No.1, pp. 1-11, 2017. https://doi.org/10.9766/KIMST.2017.20.1.001
  11. Jo, M. S., Kim, I. M., Kim, S. W., "Verification of Structural Stability for the Optical Equipment about In-Flight Vibration", Journal of the Korean Society for Aeronautical and Space Sciences, pp. 107-108, 2016.