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고주파 전자 선형가속기의 자동 주파수 제어 장치 개발에 관한 연구 : Development of an Automatic Frequency Control (AFC) System for RF Electron Linear Accelerators

차성수 2015년
논문상세정보
' 고주파 전자 선형가속기의 자동 주파수 제어 장치 개발에 관한 연구 : Development of an Automatic Frequency Control (AFC) System for RF Electron Linear Accelerators' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • accelerator
  • frequency control
  • low level rf (llrf)
  • phase-locked loop (pll)
  • rf
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' 고주파 전자 선형가속기의 자동 주파수 제어 장치 개발에 관한 연구 : Development of an Automatic Frequency Control (AFC) System for RF Electron Linear Accelerators' 의 참고문헌

  • ‘CST STUDIO SUITE getting started 2012, 2013, and 2014’.
  • ‘ANSYS Meshing User’s Guide’ (ANSYS, Inc. Southpointe 275Technology Drive Canonsburg, PA 15317).
  • ‘ANSYS Design Modeler User’s Guide’ (ANSYS, Inc. Southpointe 275Technology Drive Canonsburg, PA 15317).
  • http://www.rfdh.com
  • Y. Otake, T. Ohshima, N. Hosoda, H. Maesaka, T. Fukui, M. Kitamura,T. Shintake (2012), ‘LLRF and timing system for the SCSS testaccelerator at SPring-8’, Nucl. Instrum. Methods Phys. Res., Sect. A 696,151-163.
  • Y. Li, S. ?S. Cha, H. ?S. Kim, J. ?H. Jang, H. ?J. Kwon, K. ?T. Seol, Y. ?G. Song, and Y. ?S. Cho (2012), ‘THE PRELIMINARY TEST OF ADIGITAL CONTROL SYSTEM BASED ON THE FPGA FOR A PEFP120-KEV RF CAVITY’, Proceedings of International ParticleAccelerator Conference 2012, New Orleans, Louisiana, USA. p. 3975.
  • Y. Kim, S. Choi, and I. S. Hong (2014), ‘Design of the plasma chamberand beam extraction system for SC ECRIS of RAON accelerator’, Rev. Sci. Instrum. 85, 02A907.
  • Y. Kim (2015), ‘Development of S-band and X-band RF Electron Linacsfor Medical and Industrial Applications’, Osaka, lecture.
  • Y. Kim (2012), ‘Advanced accelerator physics tutorial for linac based freeelectron laser projects’, summer lecture.
  • Y. Kamino, K. Tsukuda, M. Kokubo, S. Miura, E. Hirai, M. Hiraoka, andJ. Ishikawa (2007), ‘Development of a new concept automatic frequencycontroller for an ultrasmall C-band linear accelerator guide’, Med. Phys. 34, 3243.
  • Y. K. Kwon, Y. K. Kim, T. Komatsubara, J. Y. Moon, J. S. Park, T. S. Shin, and Y. J. Kim (2014), ‘RAON experimental facilities for nuclearscience’, AIP Conference Proceedings, 1594, 190.
  • Y. ?S. Cho, S. S. Cha, J. ?S. Hong, J. ?H. Jang, D. ?I. Kim, H. ?S. Kim,H. ?J. Kwon, B. ?S. Park, J. Y. Ryu, K. T. Seol, Y. ?G. Song, and S. ?P. Yun (2012), ‘INSTALLATION OF 100-MEV PROTON LINAC FORPEFP’, Proceedings of International Particle Accelerator Conference88Reference2012, New Orleans, Louisiana, USA. p. 3832.
  • Y. ?S. Cho, H. ?S. Kim, and H. ?J. Kwon (2008), ‘Compact magneticquadrupole triplet for a low-energy high-current ion beam transport’, Rev. Sci. Instrum. 79, 02B715.
  • Y. ?S. Cho, D. ?I. Kim, H. ?S. Kim, K. ?T. Seol, H. ?J. Kwon, and I. ?S. Hong (2012), ‘Compact microwave ion source for industrial applications’,Rev. Sci. Instrum. 83, 02B914.
  • Y. ?M. Li, S. S. Cha, J. ?H. Jang, H. ?J. Kwon, Y. ?G. Song, H. ?S. Kim,K. ?T. Seol, and Y. ?S. Cho (2013), ‘Design and Test of a ResonanceControl System for Suppressing the Pump Vibration Effects for the PEFP13-MHz RF Cavity’, J. Korean Phys. Soc. 63, 1901.
  • Varian co. (2011), ‘Interlaced Linatron M-Series Maintenance ReferenceGuide’, Document No. 100018499-02 Revision 2.
  • Varian (2005), ‘C-series Clinac Accelerator System Basics’ (Varian85Referencemedical systems).
  • V. Ayvazyan, S. Choroba, A. Matyushin, G. Moeller, G. Petrosyan, K. Rehlich, S. Simrock, and P.Vetrov (2005), ‘Digital Low Level RF ControlSystem for the DESY TTF VUV-FEL Linac’, Workshop on Low LevelRF, CERN, Oct. 10-13.
  • U. Mavric, G. Jug (2011), ‘Design approaches for the X band LLRFsystem’, Nucl. Instrum. Methods Phys. Res., Sect. A 657, 22-26.
  • T. Wangler (2008), ‘RF Linear Accelerators’ (Wiley-VCH.: Weinheim).
  • T. Schilcher (2007), ‘Digital Signal Processing in RF Applications Part Iand II’, lecture note, CAS Sigtuna, Sweden.
  • T. Poggi (2013), ‘Algorithms for the implementation of a low level RFcontrol system for a klystron amplifier’, Nucl. Instrum. Methods Phys. Res., Sect. A 729, 506-516.
  • T. Matsumoto, S. Fukuda, H. Katagiri, S. Michizono, and Y. Yano (2007),‘DEVELOPMENT OF DIGITAL LOW-LEVEL RF CONTROLSYSTEM USING MULTI-INTERMEDIATE FREQUENCIES’,Proceedings of Particle Accelerator Conference 2007, Albuquerque,New Mexico, USA. p. 2110.
  • T. Inagaki, C. Kondo, H. Maesaka, T. Ohshima, Y. Otake, T. Sakurai,K. Shirasawa, and T. Shintake (2014), ‘High-gradient C-band linac for acompact x-ray free-electron laser facility’, Physical review special topicsaccelerators and beams, 17, 080702.
  • T. A. Trinh (2011), ‘Development of a 13MHz Cavity for an RF Implanter’,Ph. D. thesis, University of Science and Technology.
  • S. Lee (2004), ‘Accelerator Physics’ (World Scientific.: 2nd edition).
  • S. Kashiwagi, K. Furuhashi, G. Isoyama, R. Kato, Y. Morio, N. Sugimoto,Y. Terasawa, H. Hayano, H. Sugiyama, Y. Takahashi, T. Takatomi, J. Urakawa, H. Iijima and M. Kuriki (2010), ‘DEVELOPMENT OF APHOTOCATHODE RF GUN FOR THE L-BAND LINAC AT ISIR,OSAKA UNIVERSITY’, Proceedings of International ParticleAccelerator Conference 2010, Kyoto, Japan. p. 1728.
  • S. Humphries (1989), ‘Principles of Charged Particle Acceleration’ (JohnWiley & Sons, Inc.).
  • S. H. Kim et al. (2007), ‘Design of Intense L-Band Electron Linac’, J. Korean Phys. Soc. 50, 1416.
  • S. Choi, Y. Kim, I. S. Hong, and D. Jeon (2014), ‘Superconductingmagnets for the RAON electron cyclotron resonance ion source’, Rev. Sci. Instrum. 85, 02A906.
  • S. Anami, E. Kadokura, S. Michizono, S. Yamaguchi, E. Chishiro, T. Kobayashi, and H. Suzuki (2014), ‘CONTROL OF THE LOW LEVELRF SYSTEM FOR THE J-PARC LINAC’, Proceedings of LINAC 2004,92ReferenceLubeck, Germany. p. 739.
  • S. ?h. Kim (2011), ‘Suppression of Initial Energy Spread by TransientBeam Loading Effect in Pulsed RF Linacs for Intense Electron Beam’,Ph.D. thesis, Pohang University of Science and Technology.
  • R.E Ziemer and W. H. Tranter (1995), ‘Principle of Communicationssystems, Modulation, and Noise’ (John Wiley & Sons, Inc., 4th edition).
  • R. Eichhorn, A. Araz, U. Bonnes, F. Hug, M. Konrad, and P. Nonn (2010),‘A DIGITAL BASEBAND LOW LEVEL RF CONTROL FOR THEP-LINAC TEST STAND AT GSI’, Proceedings of International ParticleAccelerator Conference 2010, Kyoto, Japan. p. 1413.
  • P. Li, Z. Yin, B. J, T. Zhang, and Z. Zhao (2014), ‘Development of a lowlevelRF control system for PETcyclotron CYCIAE-14’, Nucl. Instrum. Methods Phys. Res., Sect. A 735, 184-187.
  • M. Yoshida, H. Matsumoto, T. Shintake, K. Nishiyama, and S. Miura(2012), ‘High-power microwave attenuator employing slow wavestructure’, Nucl. Instrum. Methods Phys. Res., Sect. A 693, 6-10.
  • K. ?T. Seol, H. ?J. Kwon, H. ?S. Kim, Y. ?G. Song, and Y. ?S. Cho(2011), ‘Improvement of the Low-level RF Control System for the PEFP100-MeV Proton Accelerator’, J. Korean Phys. Soc. 59, 627.
  • J. Tanabe (2005), ‘Iron Dominated Electromagnets Design, Fabrication,Assembly and Measurements’ (Stanford, CA 94025).
  • J. S. Hong (2011), ‘Measurement of Transverse Beam Emittance of the20-MeV PEFP Linac by Quad-scan and Slit-wire Methods’, Ph. D. thesis,Dankook University.
  • J. John and Livingood (1961), ‘Principles of Cyclic Particle Accelerators’(D. Van Nostrand Company, Inc.).
  • J. D. Jackson (1975), ‘Classical Electrodynamics’ (John Wiley & Sons,Inc., 2nd edition).
  • J. ?H. Y, B. ?S. Lee, S. C, J. Y. Park, J. ?W. Ok, and M. ?S. Won (2012),‘Development of compact linear accelerator in KBSI’, Rev. Sci. Instrum. 83, 02A315.
  • I. S. Hong, B. S. Park, J. H. Jang, H. J. Kwon, Y. S. Cho, and Y. S. Hwang(2010), ‘Design and construction of a compact microwave proton sourcefor a proton linac’, Rev. Sci. Instrum. 81, 02A314.
  • H. Yang, S. H. Kim, S. J. Park, J. S. Oh, M. Cho, and W. Namkung (2013),‘Transverse RF focusing in bunching cells for standing-wave linac’, Nucl. Instrum. Methods Phys. Res., Sect. A 703, 145-151.
  • H. Yang (2013), ‘C-band Standing-wave Electron Accelerator to EnhanceRF Phase Focusing for X-ray Source’, Pohang University of Science andTechnology.
  • H. Wiedemann (1993), ‘Particle Accelerator Physics, Basic Principles andLinear Beam Dynamics’ (Springer-Verlag.).
  • H. S. Kim , H. J. Kwon, K. T. Seol, I. S. Hong, Y. G. Song, D. I. Kim andY. S. Cho (2007), ‘DEVELOPMENT OF THE PEFP LOW LEVEL RFCONTROL SYSTEM’, Proceedings of Particle Accelerator Conference2007, Albuquerque, New Mexico, USA. p. 2167
  • H. Padamsee, J. Knobloch, and T. Hays. (2008), ‘RF Superconductivity forAccelerators’ (Wiley-VCH.: Weinheim).
  • H. Matsumoto, S. Takeda, S. S. Win, M. Yoshida, H. Baba, T. Shintake,J. S. Oh, Y. Takasu, and F. Furuta (2004), ‘THE KEK C-BAND RFSYSTEM FOR A LINEAR COLLIDER’, Proceedings of LINAC 2004,Lubeck, Germany. p. 256.
  • H. Hassanzadegan, N. Garmendia, V. Etxebarria, and F. Javier Bermejo(2011), ‘Low level rf system for the European Spallation Source’s Bilbaolinac’, Physical review special topics ? accelerators and beams, 14,052803.
  • H. ?S. Kim, H. ?J. Kwon, K. ?T. Seol, Y. ?G. Song, I. ?S. Hong, and Y. ?S. Cho (2007), ‘Low Level RF Control System Development for the PEFPProton Accelerator’, J. Korean Phys. Soc. 50, 1431.
  • H. ?S. Kim (2006), ‘Study on the RF Driving Technique for the Drift TubeLinear Accelerator’, Ph. D. thesis, Seoul National University.
  • H. ?J. Kwon, H. ?S. Kim, and Y. ?S. Cho (2008), ‘Test results of theproton injector of the Proton Engineering Frontier Project Accelerator’,Rev. Sci. Instrum.79, 02C707.
  • H. ?J. Kwon, H. ?S. Kim, K. ?T. Seol, J. ?Y. Ryu, J. ?H. Jang, and Y. ?S. Cho (2013), ‘DESIGN AND FABRICATION OF THE BEAMPOSITION MONITOR FOR THE PEFP LINAC’, Nucl. Eng. Tech. 45, 4.
  • G. D’Auria (2011), ‘X-band technology applications at FERMI@ElettraFEL87Referenceproject’, Nucl. Instrum. Methods Phys. Res., Sect. A 657, 150-155.
  • G. Asova et al. (2010), ‘STATUS OF THE PHOTO INJECTOR TESTFACILITY AT DESY, ZEUTHEN SITE’, Proceedings of InternationalParticle Accelerator Conference 2010, Kyoto, Japan. p.2164.
  • F. Qiu, J. Gao, H. ?y. Lin, R. Liu, X. ?p. Ma, P. Sha, Y. Sun, G. ?w. Wang,91ReferenceQ. ?y. Wang, B. Xu, and R. ?h. Zeng (2012), ‘A new IQ detection methodfor LLRF’, Nucl. Instrum. Methods Phys. Res., Sect. A 675, 139-143.
  • D. Pozar. (1998), ‘Microwave Engineering’ (John Wiley & Sons, Inc., 3rdedition).
  • D. Cheng (2009), ‘Fundamentals of Engineering Electromagnetics’(Pearson Education, Inc.).
  • D. Brandt (2010), ‘Magnets’ (CERN Accelerator School, CERN-2010-004, Geneva).
  • D. Brandt (2009), ‘Beam Diagnostics’ (CERN Accelerator School,CERN-2009-005 Geneva).
  • C.J. Karzmark et al. (1993), ‘Medical Electron Accelerators’ (McGraw-Hill, Inc. U.S.A.)
  • C.C. Yun, M. -J. Kim, D. G. Kim, J. S. Song, M. -J. Kim, J. W. Kim, J. R. Kim, and W. Wan (2013), ‘Beam optical design of in-flight fragmentseparator for high-power heavy ion beam’, Nucl. Instrum. Methods Phys. Res., Sect. B 317, 342-348.
  • C. Turner, EE 498 Senior Design Project Report.
  • C. Christou (2011), ‘X-band linac technology for a high repetition ratelight source’, Nucl. Instrum. Methods Phys. Res., Sect. A 657, 13-21.
  • B. Spataro, D. Alesini, A. Bacci, L. Ficcadenti, A. Mostacci, L. Palumbo,R. Parodi (2008), ‘A bi-periodic X-Band cavity for SPARC’, Nucl. Instrum. Methods Phys. Res., Sect. A 586, 133-142.
  • B. ?N. Lee, H. Park, K. ?b. Song, Y. Li, B. C. Lee, S. ?s. Cha, J. ?C. Lee,S. ?W. S, and J. ?s. C (2014), ‘Design Study of an S-band RF Cavity of aDual-Energy Electron LINAC for the CIS’, J. Korean Phys. Soc. 64, 205.
  • B. ?N. Lee (2014), ‘9 / 6 MeV Dual-energy KAERI S-band ElectronLINAC Based on RF Driver Modulation’, Ph. D. thesis, SungkyunkwanUniveristy.
  • A.V.Smirnov and P.Musumeci (2013), ‘S-Band RF photo injector as a86Referencedriver for coherent Cherenkov source’, Nucl. Instrum. Methods Phys. Res.,Sect. A 721, 1-9.
  • A. Novokhatski (2012), ‘A new Green’s function for the wake potentialcalculation of the SLAC S-band constant gradient accelerating section’,Nucl. Instrum. Methods Phys. Res., Sect. A 684, 46-51.
  • A. Gilmour (1994), ‘Principles of Traveling Wave Tubes’ (Artech House,Inc.).