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Operational Status and Stability Improvement of Klystron-Modulator System for PAL 2.5-GeV Electron Linac

机译:PAL 2.5-GEV电子LINAC的Klystron调制器系统的操作状态和稳定性改进

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The klystron-modulator (K&M) system of the Pohang Accelerator Laboratory (PAL) has been supplying high power microwaves for the acceleration of 2.5 GeV electron beams since October 2002. There are 12 sets of K&M systems to accelerate electron beams to 2.5 GeV nominal beam energy. One module of the K&M system consists of an 80 MW S-band (2856 MHz) klystron tube and the matching 200 MW modulator. The matching modulators of 200-MW (400 kV, 500 A) can provide a flattop pulse width of 4.4 infinsec with a maximum pulse repetition rate of 120-Hz at the full power level. The total accumulated high-voltage run-time of the oldest unit among 12 units has reached nearly 88,000 hours as of Dec. 2005, and the summation of all the units high voltage run-time is approximately 970,000 hours. The overall system availability is well over 95%. There have been continuous efforts to improve the klystron-modulator system and make it more stable and reliable. In order to obtain low electron beam energy fluctuation, the pulse-to-pulse beam voltage regulation is required to be less than +/- 0.5 %. In a conventional resonant charging pulse modulator, the regulation is usually achieved by using a de-Q''ing circuit. In this paper, we are able to review overall system performance of the high-power K&M system and the operational characteristics of the klystrons and thyratrons, and overall system''s availability analysis from Jan. to Dec. 2005
机译:Pohang Accelerator实验室(PAL)的Klystron调制器(K&M)系统以来一直为自2002年10月以来的加速2.5 GEV电子束的高功率微波。有12组K&M系统,可将电子束加速到2.5 GEV标称梁活力。 K&M系统的一个模块包括80 MW S波段(2856 MHz)Klystron管和匹配的200 MW调制器。 200-MW(400 kV,500a)的匹配调制器可以提供4.4 Infinsec的圆增脉冲宽度,最大脉冲重复率为120-Hz。截至2005年12月,12个单位中最旧的单位的累计高压运行时间达到近88,000小时,并且所有单位高压运行时间的总和约为970,000小时。整体系统可用性超过95%。一直努力改进Klystron调制器系统,使其更稳定可靠。为了获得低电子束能量波动,需要脉冲到脉冲束电压调节率小于+/- 0.5%。在传统的谐振充电脉冲调制器中,通常通过使用DE-Q'ING电路来实现调节。在本文中,我们能够审查大功率K&M系统的整体系统性能以及克利斯克朗斯和Thyratrons的操作特征,以及1月至12月至12月的整体系统的可用性分析

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