主信号源是高频数字化低电平控制系统(Low Level Radio Frequency,LLRF)的重要组成部分,它不仅用于产生高稳定度的参考信号,还用于产生控制系统所需的高精度工作时钟,其性能是高频系统性能的重要保障。本文以上海同步辐射光源(Shanghai ...主信号源是高频数字化低电平控制系统(Low Level Radio Frequency,LLRF)的重要组成部分,它不仅用于产生高稳定度的参考信号,还用于产生控制系统所需的高精度工作时钟,其性能是高频系统性能的重要保障。本文以上海同步辐射光源(Shanghai Synchrotron Radiation Facility,SSRF)的主信号源作为研究对象,通过采用锁相环技术和直接模拟合成技术实现了500 MHz的单频信号源。实验测试结果显示:两种技术分别实现了-125 dBc/Hz@1 kHz和-132 d Bc/Hz@1 k Hz的相位噪声,均满足上海光源高频系统对信号源的性能要求。展开更多
In this paper we report the design and realization of beam trip diagnostic system at Shanghai Synchrotron Radiation Facility (SSRF). The system can find out the first fault signal in the key operation signals related ...In this paper we report the design and realization of beam trip diagnostic system at Shanghai Synchrotron Radiation Facility (SSRF). The system can find out the first fault signal in the key operation signals related to the RF system by analyzing the time sequence, also it can decide which trips occurs first among the three superconducting RF stations. All the states of monitored signals in a time period ahead and behind beam trip are recorded. The results are compared with those from other diagnostic tools at SSRF. The work is of help in improving reliability of the superconducting RF system and stability of the storage ring operation.展开更多
Superconducting cavities have been adopted in many kinds of accelerator facilities such as synchrotron radiation light source, hard X-ray free electron laser linac, colliders and energy recovery linacs (ERL). The 500 ...Superconducting cavities have been adopted in many kinds of accelerator facilities such as synchrotron radiation light source, hard X-ray free electron laser linac, colliders and energy recovery linacs (ERL). The 500 MHz superconducting cavities will be a candidate to be installed in the high current accelerators and high current ERLs for their large beam aperture, low higher order modes impedance and high current threshold value. This paper presents great progress in the whole sequence of developing 500 MHz superconducting cavity in China. It describes the first in-house successful development of 500 MHz single cell superconducting cavity including the deep-drawing of niobium half cells, electron beam wielding of cavity, surface preparations and vertical testing. The highest accelerating gradient of the fabricated cavity #SCD-02 higher than 10 MV/m was obtained while the quality factor was better than 4×108 at 4.2 K, which has reached the world level of the same kind of cavities.展开更多
文摘主信号源是高频数字化低电平控制系统(Low Level Radio Frequency,LLRF)的重要组成部分,它不仅用于产生高稳定度的参考信号,还用于产生控制系统所需的高精度工作时钟,其性能是高频系统性能的重要保障。本文以上海同步辐射光源(Shanghai Synchrotron Radiation Facility,SSRF)的主信号源作为研究对象,通过采用锁相环技术和直接模拟合成技术实现了500 MHz的单频信号源。实验测试结果显示:两种技术分别实现了-125 dBc/Hz@1 kHz和-132 d Bc/Hz@1 k Hz的相位噪声,均满足上海光源高频系统对信号源的性能要求。
文摘In this paper we report the design and realization of beam trip diagnostic system at Shanghai Synchrotron Radiation Facility (SSRF). The system can find out the first fault signal in the key operation signals related to the RF system by analyzing the time sequence, also it can decide which trips occurs first among the three superconducting RF stations. All the states of monitored signals in a time period ahead and behind beam trip are recorded. The results are compared with those from other diagnostic tools at SSRF. The work is of help in improving reliability of the superconducting RF system and stability of the storage ring operation.
文摘Superconducting cavities have been adopted in many kinds of accelerator facilities such as synchrotron radiation light source, hard X-ray free electron laser linac, colliders and energy recovery linacs (ERL). The 500 MHz superconducting cavities will be a candidate to be installed in the high current accelerators and high current ERLs for their large beam aperture, low higher order modes impedance and high current threshold value. This paper presents great progress in the whole sequence of developing 500 MHz superconducting cavity in China. It describes the first in-house successful development of 500 MHz single cell superconducting cavity including the deep-drawing of niobium half cells, electron beam wielding of cavity, surface preparations and vertical testing. The highest accelerating gradient of the fabricated cavity #SCD-02 higher than 10 MV/m was obtained while the quality factor was better than 4×108 at 4.2 K, which has reached the world level of the same kind of cavities.