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[n]	C. S. Narug et al., “Design Status of BCC Cryomodule for LCLS-II HE”, in Proc. SRF'23, Grand Rapids, MI, USA, Jun. 2023, pp. 263-266. doi:10.18429/JACoW-SRF2023-MOPMB065
[n]	J. Q. Wang, L. Ma, and C. Zhang, “Commissioning of BEPCII”, in Proc. EPAC'08, Genoa, Italy, Jun. 2008, paper TUOAG02, pp. 959-961. 
[n]	K. Truempy, R. Gleyvod, and G. Reinhold, “HV DC Injectors for Large Heavy-Ion Accelerators”, in Proc. PAC'75, Washington D.C., USA, Mar. 1975, pp. 1293-1296. 
[n]	Y. M. Pischalnikov et al., “Extended Range SRF Cavity Tuner for LCLS II HE Project”, in Proc. SRF'21, East Lansing, MI, USA, Jun.-Jul. 2021, pp. 203. doi:10.18429/JACoW-SRF2021-MOPTEV002
[n]	F. Armborst, P. Goslawski, and A. Jankowiak, “Tune and Chromaticity Optimization at Bessy II for the Transverse Resonant Island Bucket Optics”, in Proc. IPAC'19, Melbourne, Australia, May 2019, pp. 1411-1414. doi:10.18429/JACoW-IPAC2019-TUPGW013
[n]	L. Y. Ji et al., “Study on the Extraction of a Compact Cyclotron for BNCT”, in Proc. Cyclotrons'22, Beijing, China, Dec. 2022, paper MOPO009, pp. 73-75. doi:10.18429/JACoW-CYCLOTRONS2022-MOPO009
[n]	R. Frankel et al., “The AGS Booster Control System”, in Proc. EPAC'88, Rome, Italy, Jun. 1988, pp. 1090-1093. 
[n]	Y. Yang et al., “Multicavity Coherent Pulse Stacking Using Herriott Cells”, in Proc. NAPAC'16, Chicago, IL, USA, Oct. 2016, pp. 370-372. doi:10.18429/JACoW-NAPAC2016-TUPOA42
[n]	Z. A. Conway and M. Liepe, “Fast Piezoelectric Actuator Control of Microphonics in the CW Cornell ERL Injector Cryomodule”, in Proc. PAC'09, Vancouver, Canada, May 2009, paper TU5PFP043, pp. 918-920. 
[n]	L. E. Korolev, D. V. Efremov, “Some Perspectives in the Beam Transport and Analyzing System Design for the U-250 Cyclotron”, in Proc. Cyclotrons'92, Vancouver, Canada, Jul. 1992, paper XD-01, pp. 606-608. 
[n]	F. H. O et al., “Progress in the Development of Textured Dysprosium for Undulator Applications”, in Proc. NAPAC'13, Pasadena, CA, USA, Sep.-Oct. 2013, paper THPAC36, pp. 1217-1219. 
[n]	H. Winick, “SSRL: Past Experience, Present Development, Future Plans”, in Proc. PAC'79, San Francisco, CA, USA, Mar. 1979, pp. 3798-3801. 
[n]	T. Boltz et al., “Accelerating Machine Learning for Machine Physics (an AMALEA-project at KIT)”, in Proc. ICALEPCS'19, New York, NY, USA, Oct. 2019, pp. 782. doi:10.18429/JACoW-ICALEPCS2019-TUCPL06
[n]	D. Liska, J. Billen, L. Dauelsberg, H. Mignardot, and G. Zimmerman, “A High-Intensity Drift-Tube Linac with Ramped Accelerating Gradient”, in Proc. LINAC'88, Williamsburg, VA, USA, Oct. 1988, paper TH3-52, pp. 652-655. 
[n]	Y. A. Svistunov and M. F. Vorogushin, “Design and Construction of CDTC Accelerating System”, in Proc. EPAC'02, Paris, France, Jun. 2002, paper MOPRI104, pp. 2810-2812. 
[n]	I. H. Yu et al., “Digital RF Feedback Control System for 100MeV Proton Linac of PEFP”, in Proc. APAC'04, Gyeongju, Korea, Mar. 2004, paper TUP11014, pp. XX-XX. 
[n]	S. Ohsawa et al., “Increase of Positrons by a High-Intensity Two-Bunch Acceleration Scheme at the KEKB Linac”, in Proc. PAC'01, Chicago, IL, USA, Jun. 2001, paper RPPH026, pp. 3284-3286. 
[n]	P. Bernard et al., “Superconducting RF Cavities for LEP”, in Proc. EPAC'88, Rome, Italy, Jun. 1988, pp. 958-961. 

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