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Development of UHF Band antenna for Integrated Communication

통합마스트 통합통신용 UHF 대역 안테나 개발

  • Received : 2020.05.27
  • Accepted : 2020.06.17
  • Published : 2020.06.30

Abstract

This paper, UHF band integrated communication antenna for ship communication is designed as a flat type that can be mounted on the integrated mast among integrated communication antennas such as integrated communication, ship communication, broadcasting, and telephone of the ship. The unified mast mounted antenna is an integrated communication antenna applied to the Navy's KDDX, which is an optimized type of integrated communication antenna including a 'composite slope' structure including operational capability, survivability, and improved operability and maintainability. The existing rotary radar and a plurality of monopole-type communication antennas were changed from an irregularly attached shape to the mast exterior to an integrated mast shape including a flat-type integrated communication antenna. the radar reflection area index (RCS) is significantly lowered and compared to overseas products. The goal is to develop a gain broadband antenna.

본 논문에서는 함정의 합내통신, 함외통신, 방송, 전화 등의 통합통신 안테나 중 함외통신용 UHF 대역 통합통신 안테나를 통합마스트에 탑재 가능한 평면형으로 설계했다. 제안된 통합마스트 탑재용 안테나는 해군의 한국형차기구축함(KDDX)에 적용되는 통합통신용 안테나로 작전능력, 생존성 강화와 운용성과 정비성의 향상 등 '복합경사' 구조를 포함하는 최적화된 형태의 통합통신용 안테나이다. 기존 회전식 레이더와 다수의 모노폴 형태의 통신용 안테나를 마스트 외관에 불규칙한 형태로 부착된 형태에서 평판형 통합통신용 안테나를 포함하는 통합 마스트 형상으로 변경하여 레이더 반사 면적 지수(RCS)를 크게 낮추며 해외제품 대비 고이득 광대역 안테나를 개발목표로 한다.

Keywords

References

  1. Tharek Abdul Rahman, "Reconfigurable ultra wideband antenna and development for wireless communication," Wireless Communicant on Centre Faculty of Electrical Engineering University Teknology, 2008.
  2. J. Church, J. C. S. Chieh, L. Xu, J. D. Rockway, and D. Arceo, "UHF electrically small box cage loop antenna with an embedded non-foster load," IEEE Antennas and Wireless Propagation Letters, vol.13, pp.1329-1332, 2014. DOI: 10.1109/LAWP.2014.2337112
  3. R. C. Hansen, R. E. Collin, "Small Antenna Handbook," 1st ed. Hoboken, NJ: John Wiley & Sons, 2011.
  4. J. H. Lee, Y. E. Ra, K. M. Lee, J. S. Jang, "Design of RCS Reduction Structure of Integrated Mast on the Destroyer," j.inst.Korean.electr.electron. eng, Vol.24, No.1, pp.238-242, 2020. DOI: 10.7471/ikeee.2020.24.1.238
  5. D. G You, J. I Jeon, H. K. Lee, H. K. Choi, "Design of Cavity-Backed Microstrip Dipole Array Antennas with Enhanced Front-to-Back Ratio," Journal of Korean Institute of Electromagnetic Engineering and Science, 2009. DOI: 10.5515/KJKIEES.2009.20.1.037
  6. S. W. Qu, J. L. Li, Q. Xue, C. H. Chan, "Wideband Cavity-Backed Bowtie Antenna With Pattern Im provement," IEEE Transactions on Antennas and Propagation, Vol.56, 2008. DOI: 10.1109/TAP.2008.2007395
  7. Richard W. Ziolkowski, "Metamaterial-based efficient electrically small antennas," IEEE Transactions on Antenn as and Propagation, Vol.54, 2006. DOI: 10.1109/TAP.2006.877179
  8. John Volakis, Richard C. Johnson, Henry Jasik, "Antena a Engineering Handbook," Fourth Edition, McGraw-Hill Education, 2007.