兰州重离子加速器放射性次级束分离线一号线(Heavy Ion Research Facility in Lanzhou-Radioactive Ion Beam Line 1,HIRFL-RIBLL1)已运行多年,其电源控制系统因建设初期条件所限设计较为简单,加之近年来系统部件老化,已不能很好满足物...兰州重离子加速器放射性次级束分离线一号线(Heavy Ion Research Facility in Lanzhou-Radioactive Ion Beam Line 1,HIRFL-RIBLL1)已运行多年,其电源控制系统因建设初期条件所限设计较为简单,加之近年来系统部件老化,已不能很好满足物理实验要求,迫切需要进行升级改造。新的电源控制系统针对现有问题,采用分布式架构,每台电源用一台高精度控制器就近控制。同时集成了二极磁铁磁场强度和所有电源输出电流的监控,并且利用滞环控制策略,实现了根据预设磁刚度自动调试电源的功能。新电源控制系统经过一年多来的几次实验调束验证,在调试精度、抗干扰性、易用性等方面满足了RIBLL1物理需求,大幅度提高了调束效率。展开更多
A kicker control system is used for beam extraction and injection between two cooling storage rings(CSRs) at the Heavy Ion Research Facility in Lanzhou(HIRFL). To meet the requirements of special physics experimen...A kicker control system is used for beam extraction and injection between two cooling storage rings(CSRs) at the Heavy Ion Research Facility in Lanzhou(HIRFL). To meet the requirements of special physics experiments, the kicker controller has been upgraded, with a new controller designed based on ARM+DSP+FPGA technology and monolithic circuit architecture, which can achieve a precision time delay of 2.5 ns. In September2014, the new kicker control system was installed in the kicker field, and the test experiment using the system was completed. In addition, a pre-trigger signal was provided by the controller, which was designed to synchronize the beam diagnostic system and physics experiments. Experimental results indicate that the phenomena of “missed kick”and “inefficient kick” were not observed, and the multichannel trigger signal delay could be adjusted individually for kick power supplies in digitization; thus, the beam transport efficiency was improved compared with that of the original system. The fast extraction and injection experiment was successfully completed based on the new kicker control systems for HIRFL.展开更多
文摘兰州重离子加速器放射性次级束分离线一号线(Heavy Ion Research Facility in Lanzhou-Radioactive Ion Beam Line 1,HIRFL-RIBLL1)已运行多年,其电源控制系统因建设初期条件所限设计较为简单,加之近年来系统部件老化,已不能很好满足物理实验要求,迫切需要进行升级改造。新的电源控制系统针对现有问题,采用分布式架构,每台电源用一台高精度控制器就近控制。同时集成了二极磁铁磁场强度和所有电源输出电流的监控,并且利用滞环控制策略,实现了根据预设磁刚度自动调试电源的功能。新电源控制系统经过一年多来的几次实验调束验证,在调试精度、抗干扰性、易用性等方面满足了RIBLL1物理需求,大幅度提高了调束效率。
基金Supported by National Natural Science Foundation of China(U1232123)
文摘A kicker control system is used for beam extraction and injection between two cooling storage rings(CSRs) at the Heavy Ion Research Facility in Lanzhou(HIRFL). To meet the requirements of special physics experiments, the kicker controller has been upgraded, with a new controller designed based on ARM+DSP+FPGA technology and monolithic circuit architecture, which can achieve a precision time delay of 2.5 ns. In September2014, the new kicker control system was installed in the kicker field, and the test experiment using the system was completed. In addition, a pre-trigger signal was provided by the controller, which was designed to synchronize the beam diagnostic system and physics experiments. Experimental results indicate that the phenomena of “missed kick”and “inefficient kick” were not observed, and the multichannel trigger signal delay could be adjusted individually for kick power supplies in digitization; thus, the beam transport efficiency was improved compared with that of the original system. The fast extraction and injection experiment was successfully completed based on the new kicker control systems for HIRFL.