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Optimal power system and grid interface design considerations for the CLICs klystron modulators

机译:CLIC速调管调制器的最佳电源系统和电网接口设计注意事项

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The Compact Linear Collider (CLIC) is an electron-positron collider under study at CERN with the aim to explore the next generation of high precision/high energy particles physics. The CLIC's drive beams will be accelerated by approximately 1300 klystrons, requiring highly efficient and controllable solid state capacitor discharge modulators. Capacitor charger specifications include the requirement to mask the pulsed effect of the load from the utility grid, ensure maximum power quality, control the derived DC voltage precisely (to maximize accuracy for the modulators being implemented), and achieve high efficiency and operability of the overall power system. This paper presents the work carried out on the power system interface for the CLIC facility. In particular it discusses the challenges on the utility interface and analysis of the grid interface converters with regards to required functionality, efficiency, and control methodologies.
机译:紧凑型线性对撞机(CLIC)是欧洲核子研究组织(CERN)正在研究的一种电子-正电子对撞机,旨在探索下一代高精度/高能粒子物理学。 CLIC的驱动梁将被大约1300个速调管加速,这需要高效且可控的固态电容器放电调制器。电容器充电器规范包括以下要求:掩盖来自公用电网的负载的脉冲效应,确保最高的电能质量,精确控制导出的DC电压(以最大程度地提高所实现的调制器的精度),并实现整体的高效率和可操作性电源系统。本文介绍了在CLIC设施的电源系统接口上执行的工作。特别是,它讨论了在实用程序接口和网格接口转换器分析方面在所需功能,效率和控制方法方面的挑战。

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