Liang Yu, Zhu Wenchao, Xie Chunjie, Wei Zhengyu, Luo Qing, Sun Baogen, Zhou Zeran
National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230026, China.
Rev Sci Instrum. 2024 Apr 1;95(4). doi: 10.1063/5.0195927.
Building reliable fast orbit feedback (FOFB) systems to offer high stability of the beam orbit becomes more challenging for the diffraction-limited storage ring due to the smaller beam size. The beam position measurement and control (BPMC) processor has been developed to streamline the FOFB system architecture by integrating BPM (Beam Position Monitor) electronics and an orbit feedback controller. This paper designs a hierarchical dual-ring network topology based on BPMC processors using parameters derived from the storage ring of the Hefei Advanced Light Facility. To reduce latency and prevent data transmission collisions, we propose a multi-forwarding communication scheme and a communication controller design in a field-programmable gate array. Experimental results verify that this topology operates reliably with the multi-forwarding scheme, providing an approximate communication latency as low as 17.336 μs to support the 30 kHz orbit feedback update rate.
对于衍射极限储存环而言,由于束流尺寸更小,构建可靠的快速轨道反馈(FOFB)系统以实现束流轨道的高稳定性变得更具挑战性。已开发出束流位置测量与控制(BPMC)处理器,通过集成束流位置监测器(BPM)电子设备和轨道反馈控制器来简化FOFB系统架构。本文利用合肥先进光源储存环的参数,设计了一种基于BPMC处理器的分层双环网络拓扑结构。为了减少延迟并防止数据传输冲突,我们提出了一种多转发通信方案以及在现场可编程门阵列中进行通信控制器设计。实验结果验证了这种拓扑结构在多转发方案下可靠运行,提供了低至17.336 μs的近似通信延迟,以支持30 kHz的轨道反馈更新速率。