박사

UAS 데이터링크를 위한 다중모드 모노펄스신호 SNR 개선기법

이재문 2016년
논문상세정보
' UAS 데이터링크를 위한 다중모드 모노펄스신호 SNR 개선기법' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 다중모드
  • 모노펄스
  • 위성추적시스템
  • 추적정확도
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
14 0

0.0%

' UAS 데이터링크를 위한 다중모드 모노펄스신호 SNR 개선기법' 의 참고문헌

  •  1] T.J.Afullo and P.K.Odedina, "Effective earth radius factor measurement and modeling for radio link design in BOTSWANA", South african institute of electrical engineers, Vol. 99, no.3, pp.77-86, 2008.
  • “통신용 파라볼라 안테나, 통신 용 파라볼라 안테나의 급전 혼 조립체 및 그것의 제어 방법”
    박도현 백광훈 송충호 안성준 전찬원 특허등록 번호(101360107-0000) [2013]
  • “자기상보 원리를 이용한 UAS 탑재용 초광대역 반파장 루프 안테나”
    김준원 우종명 윤명한 한국인터넷방송통신학회 논문지 Vol.15, No.2, pp.213-219 [2015]
  • “시간지연이 있는 모노펄스 신 호를 사용하는 이동형 위성안테나시스템의 추적성능분석”
    김광태 남병욱 이종효 조규환 조시훈 한국군사과학 기술학회 종합학술대회 vol. , pp. 1369-1370, 2015 [2015]
  • “무인기의 고속 도플러 편이 환경에서 최적 시 간지연을 갖는 다중모드 모노펄스용 위성비콘 신호처리에 관한 연구,”
    안희수 이재문 임재성 한국군사과학기술학회지, 제19권, 5호(통권 84호), Oct. (게재예정) [2016]
  • “Ku 대역 다중모드 모노펄스 위성추적시스템을 위한 커플러 구현 및 시스템 성능분석,”
    가득현 이재문 임재성 한 국인터넷방송통신학회지, vol. 16, No. 2, pp.93-99, Apr. 30 [2016]
  • “Ku 대역 다중모드 모노펄스 위성추적시스템 을 위한 커플러 구현 및 시스템 성능분석,”
    박도현 이재문 임재성 한국군사과학기술학회지, 제19권, 3호(통권 82호), June (게재예정) [2016]
  • “Ka 대역 다중모드 모노펄스 위성추적 시스템”
    권건섭 박도현 유흥균 허종완 황기민 한국군사과학기술학회 종합학술대회, pp 78-79 [2014]
  • “Ka 대역 OTM(On-The-Move) 위성통신 시스템 설계와 채널 특징”
    권건섭 충북대학교 대학원 [2015]
  • “COTM challenges”, MilsatMagazine, March, 2010
  • “A multi-mode monopulse tracking system for satellite communication,” In Proc. KIEES conf., p. 104, Incheon
  • Y. H. Choung, K. R. Goudey, and L. G. Bryans, “Theory and design of a Ku-band TE21-mode coupler,” IEEE MTT, vol. 30, no. 11, pp. 1862–1866, 1982
  • Y. H. Choung, K. R. Goudey, and L. G. Bryans, “Theory and design of a Ku-band TE21-mode coupler,” IEEE MTT, vol. 30, no. 11, pp. 1862-1866, Nov. 1982.
  • W. L. Pritchard, H. G. Suyderhoud, and R. A. Nelson, Satellite communication systes engineering, Prentice-Hall
  • W. K. Gawronski, C. S. Racho, and J. A. Mellstrom, "Application of the LQG and feedforward controllers to the deep space network antennas," IEEE Transactions on Control Systems Technology, vol. 3, no. 4, pp. 417 - 421, 1995.
  • Vinay K. Ingle, John G. Proakis “Digital Signal Processing using MATLAB” THOMSON, pp.34, 357-362, 2007
  • Tiago C. S. Xavier, Elvio J. Leonardo, Jo o A. Martini, Itana M. S. Gimenes and Luciana A. F. Martimiano, “Simulation of wireless channel for UAS communication” www.ufmg.br, 2011
  • Telecommunications Technology Association, Tracking system, Retrieved Jan. 6, 2014, from http://www.tta.or.kr
  • Takashi Kitsuregawa, “Advanced technology in satellite communication antennas: Electrical and mechanical design”, Artech House, 1990
  • T. Inoue and T. Kaitsuka, "K-band tracking system for domestic satellite communication system," IEEE Transactions on Aerospace and Electronic Systems, vol. AES-17, no. 4, pp. 561 - 570, 1981.
  • ShihYuan Yeh, “Development of a digital TRACKING ARRAY WITH SINGLE-CHANNEL RSNS AND MONOPULSE DIGITAL BEAMFORMING”, Master’s Thesis, Navel Postgraduate school, Monterey, California, December 2010
  • Sakar. L, “The High Order Modes in the Feeds of the Satellite Monopulse Tracking Antennas”, IEEE Proceeding, pp. 453-457, 2002
  • S. T. Jenkins and J. M. Hilkert, “Line of sight stabilization using image motion compensation,” Proc. SPIE, Acquisition, Tracking, and Pointing III, S. Gowrinathan, Ed., vol. 1111, pp. 98–115, Sept. 1989.
  • S. M. Sherman(1984), Monopulse Principles and Techniques Sherman, Artech House, 1984
  • Ronald L. Brosmer, Gerald S. Hopp, Robert B. Ashcraft, “ ADVANCED AIRBORNE MILITARY COMMUNICATIONS ARCHITECTURES ENABLED BY COMMERCIAL BROADBAND SATELLITE COMMUNICATIONS” Proceedings of IEEE MILCOM , pp. 184-188, 2002.
  • R. C. Snel, J. G. Mangum, and J. W. M. Baars, "Study of the Dynamics of Large Reflector Antennas with Accelerometers," IEEE Antennas and Propagation Magazine, vol. 49, no. 4, pp. 84 - 101, 2007.
  • R. C. Hansen, "Fundamental limitations in antennas," Proceedings of the IEEE, vol. 69, no. 2, pp. 170 - 182 1981.
  • MIL-STD-188-164B, "Interoperability of SHF Satellite Communication Terminals," March. 2012.
  • M. Safak, "Limitations on reflector antenna gain by random surface errors, pointing errors, and the angle-of-arrival jitter," IEEE Transactions on Antennas and Propagation, vol. 38, no. 1, pp. 117 - 121, 1990.
  • M. K. Masten and J. M. Hilkert, “Electromechanical system configurations for pointing, tracking and stabilization applications,” Proc. SPIE, Electromechan. Syst. Interaction Optical Design, S. Gowrinathan, Ed., vol. 493, pp. 75–86, Oct. 1987.
  • M. Hein, H. Bayer, A. Krauss, R. Stephan, C. Volmer, A. Heuberger, E. Eberlein, C. Keip, M. Mehnert, A. Mitschele-Thiel, P. Drie , and T. Volkert, “Perspectives for mobile satellite communications in Ka-band (MoSaKa),” EuCAP 2010: The 4th European Conference on Antennas and Propagation, Barcelona, Spain, 2010.
  • L. A. Stockum, J. Burge, and G. Plunk, “Electromechanical system configurations for precision pointing and tracking systems,” Proc. SPIE, Electromechan. Syst. Interaction with Optical Design, S. Gowrinathan, Ed., vol. 493, pp. 66–71, Oct. 1987
  • L. A. Stockum and G. R. Carroll, “Precision stabilized platforms for shipboard electro-optical systems,” Proc. SPIE, Optical Platforms, C.L. Wyman, Ed., vol. 493, pp. 414–420, Oct. 1984.
  • James R. Werts, Wiley J. Larson, “Space Mission analysis and Design”, Kluwer Microcosm press, Academic publishers, Third Edition, pp. 110-117, 2003
  • Jafar Nateghi, Leila Mohammadi, “The Comparison between the TE2l Mode and the Four-Hom Monopulse Technique for LEO Satellite Tracking”, ICACT 2010 pp.403-406
  • Jafar Nateghi, Leila Mohammadi, and G. R. Solat, “Analysis of the conical tracking technique in LEO satellite stations,” ICACT 2009, pp. 1950–1953, 2009]
  • J. S. Cook, R. Lowell, "The autotrack system," Bell System Technical Journal , vol. 42, no. 4, pp. 1283-1307, July 1963.
  • J. Nateghi, L. Mohammadi, and G. R. Solat, "Analysis of the conical tracking technique in LEO satellite stations," 11th International Conference on Advanced Communication Technology(ICACT), vol. 03, pp. 1950 - 1953, 2009.
  • J. Nateghi and L. Mohammadi, "The comparison between the TE21 mode and the four horn monopulse technique for LEO satellite tracking," The 12th International Conference on Advanced Communication Technology (ICACT) , vol. 1, pp. 403 - 406, 2010.
  • J. Debruin, “Control Systems for Mobile Satcom Antennas,” IEEE Control Systems Magazine, pp 86-101, Feb. 2008
  • ITU-R P.618, Propagation data and prediction methods required for the design of earth-space telecommunication systems
  • ITU, “Handbook, Satellite Communications_Fixed satellite service”, Geneva, 1988
  • INTELSAT Signatory Training Program, “EARTH STATION TECHNOLOGY” Revision 5, Jun. 1999
  • I. Davis, J. Kot, C. Granet, G. Pope, and K. Verran, “Compact shaped dual-reflector system for military Ka-Band SATCOM on the move,” EuCAP 2011: The 5th European Conference on Antennas and Propagation, Rome, Italy, 2011
  • H. Bayer, C. Volmer, A. Krauss, R. Stephan, and M. A. Hein, “Tracking antenna for mobile bi-directional satellite communications in Ka-band,” IEEE International Conference on Wireless Information Technology and Systems, Honolulu, Hawai’i, USA, 2010.
  • H. Bayer, A. Krauss, R. Stephan, and M. Hein, “Multimode monopulse tracking feed with dual-band potential for land-mobile satellite communications in Ka-band,” EuCAP 2011: The 5th European Conference on Antennas and Propagation, Rome, Italy, 2011.
  • H. Bayer, A. Krauss, R. Stephan, and M. A. Hein, “A dual-band multimode monopulse tracking antenna for land-mobile satellite communications in Ka-band,” 6th European Conference on Antennas and Propagation (EUCAP), pp. 2357–2361, 2011.
  • Gordon E. Carlson “Signal and Linear system Analysis” Houghton Mifflin, pp. 606-612, 1992.
  • G. Maral, M. Bousquet “SATELLITE COMMUNICATIONS SYSTEMS, Systems, Techniques and Technology,” 5th Edition, WILEY, 2009.
  • G. J. Hawkins, D. J. Edwards, and J. P McGeehan, “Tracking systems for satellite communications,” Radar and Signal Processing, vol. 135, no. 5, pp. 393-407, Oct. 1988.
  • G. Gerson and A.K. Rue, “Tracking systems,” in The Infrared Handbook, Dept. Navy: Washington, D.C., ch. 22, pp. 3-37, 1978
  • E. H. Lenzing, H. F. Lenzing, "Characteristics of the TE21 Mode in Circular apertures as Used for Satellite Tracking," IEEE Trans., Aerospace and Electronic Systems, vol. 37, no. 3, pp. 1113-1117, July 2001.
  • Dr. Lofty Sakr, “The higher order modes in the feeds of the satellite monopulse tracking antennas”, IEEE Melecon, Egypt Cairo, 2002
  • D. Savini, "An Improved Automatic Tracking System for Linear and Circular Polarization," Microwave Conference, 10th European, Sept. 1980.
  • D. M. Pozar, Microwave Engineering 4th, John Wiley & Sons, 2011.
  • C. H. Cho, S. H. Lee, T. Y. Kwon, and C..Lee, "Antenna control system using step tracking algorithm with H∞ controller," International Journal of Control, Automation, and Systems, vol. 1, no. 1, March 2003.
  • Boul Chandra Garai, Priyanka Das, Amit Kumar Mishra “Group delay reduction in FIR digital filters ” Signal Processing 91, pp. 1812-1825, 2011.
  • Berat Levent Gezer, “Multi-Beam Digital Antenna for Radar, Communications, and UAS Tracking Based on Off-The-Shelf Wireless Technologies,” Master’s Thesis, Naval Postgraduate School, Monterey, California, September 2006
  • Alan V. Oppenheim, Ronald W. Schafer, Discrete-Time Signal Processing, Prentice Hall, pp. 345-347, 1989.
  • A. K. Rue, “Stabilization of precision electro-optical pointing and tracking systems,” IEEE Trans. Aerosp. Electron. Syst., vol. AES-5, pp. 805–819, Sept. 1969.
  • A. K. Rue, “Precision stabilization systems,” IEEE Trans. Aerosp. Electron. Sys., vol. AES-10, pp. 34–42, Jan. 1974.