Design considerations for a PEBB-based Marx-topology ILC klystron modulator

K. Macken, T. Beukers, C. Burkhart, M. Kemp, M. Nguyen, T. Tang
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引用次数: 4

Abstract

The concept of Power Electronic Building Blocks (PEBBs) has its origin in the U.S. Navy during the last decade of the past century. As compared to a more conventional or classical design approach, a PEBB-oriented design approach combines various potential advantages such as increased modularity, high availability, and simplified serviceability. This relatively new design paradigm for power conversion has progressively matured since then and its underlying philosophy has been clearly and successfully demonstrated in a number of real-world applications. Therefore, this approach has been adopted here to design a Marx-topology modulator for an International Linear Collider (ILC) environment where easy serviceability and high availability are crucial. This paper describes various aspects relating to the design of a 32-cell Marx-topology ILC klystron modulator. The concept of nested droop correction is introduced and illustrated. Several design considerations including cosmic ray withstand, power cycling capability, fault tolerance, etc., are discussed. Details of the design of a Marx cell PEBB are included.
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基于pebb的马克思拓扑ILC速调管调制器的设计考虑
电力电子构件(PEBBs)的概念起源于上世纪最后十年的美国海军。与更传统或经典的设计方法相比,面向pebb的设计方法结合了各种潜在的优势,例如增强的模块化、高可用性和简化的可维护性。从那时起,这种相对较新的电源转换设计范例已经逐渐成熟,其基本原理已经在许多实际应用中得到了清楚和成功的证明。因此,本文采用这种方法为易于维护和高可用性至关重要的国际线性对撞机(ILC)环境设计马克思拓扑调制器。本文介绍了与32单元马克思拓扑ILC速调管调制器设计有关的各个方面。介绍并说明了嵌套下垂校正的概念。讨论了抗宇宙射线、功率循环能力、容错性等设计考虑因素。包括马克思细胞PEBB的设计细节。
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