Upgrade of low level RF system based on Micro Telecom Computing Architecture (MTCA) for HLS-II LINAC

Q4 Engineering 强激光与粒子束 Pub Date : 2020-08-13 DOI:10.11884/HPLPB202032.200080
Ren Tianqi, Tang Leilei, Zhou Zeran
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引用次数: 0

Abstract

The performance of Hefei Light Source II (HLS-II) has improved a lot after major maintenance and reconstruction. To further provide continuous and stable light, the RF system of the HLS-II LINAC needs to be upgraded for top-off mode. It is required that the RF power source have long-time stability and reliability, but the old analog low level RF system(LLRF) can’t meet the requirement. Hence a digital low level RF control system based on Micro Telecom Computing Architecture(MTCA) is designed and implemented to control the amplitude and phase of the RF power source. This system is composed of digital board cards based on FPGA, RF board cards, MTCA chassis and a frequency synthesis system. It works at 2856 MHz of S band, with phase and amplitude stability up to 0.2° and 0.04% respectively, which meets the top-off mode requirement of 0.25° RMS phase jitter of the digital low-level RF system in the HLS-II LINAC.
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基于微通信计算架构(MTCA)的HLS-II LINAC低电平射频系统升级
合肥光源二号(HLS-II)经过大修和改造,性能有了很大的提高。为了进一步提供连续和稳定的光线,HLS-II LINAC的RF系统需要升级为关闭模式。要求射频电源具有长期稳定性和可靠性,但传统的模拟低电平射频系统(LLRF)已不能满足要求。因此,设计并实现了一种基于微电信计算架构(MTCA)的数字低电平RF控制系统,以控制RF电源的幅度和相位。该系统由基于FPGA的数字板卡、射频板卡、MTCA机箱和频率合成系统组成。它工作在2856MHz的S波段,相位和幅度稳定性分别高达0.2°和0.04%,满足HLS-II LINAC中数字低电平RF系统0.25°RMS相位抖动的封顶模式要求。
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来源期刊
强激光与粒子束
强激光与粒子束 Engineering-Electrical and Electronic Engineering
CiteScore
0.90
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0.00%
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11289
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