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High-current low-voltage power supplies for superconducting magnets

机译:用于超导磁体的高电流低压电源

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In a synchrotron accelerator, the beam trajectory is controlled thanks to magnets, where superconducting technology allows to generate very strong magnetic fields. This was a key element in the construction of the Large Hadron Collider (LHC), the world largest accelerator. Such magnets need special power supplies providing very high DC current under low voltage. In the frame of High Luminosity-LHC (HL-LHC), stronger superconducting magnets are developed and require enhanced supplies. This article reviews the present power supply topologies and introduces new concepts: HL-LHC project offers an opportunity for upgraded system, increased operational performances as well as integrated energy storage to recover energy from the superconducting magnets.
机译:在同步rotron加速器中,由于磁体,梁轨迹被控制,其中超导技术允许产生非常强的磁场。这是施工大型特罗龙撞机(LHC),世界上最大的加速器的关键要素。这种磁铁需要在低电压下提供非常高的DC电流提供的特殊电源。在高亮度-LHC(HL-LHC)的框架中,开发出强的超导磁体并需要增强的供应。本文审查了目前的电源拓扑,并介绍了新的概念:HL-LHC项目为升级系统提供了机会,增加了运营表演,以及从超导磁铁中恢复能量的集成能量存储。

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