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A digital phase-locked loop based LLRF system

机译:基于数字锁相环的LLRF系统

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TRIUMF's ARIEL pre-buncher is powered by a sawtooth waveform which is the combination of 11.79 MHz, 23.57 MHz and 35.36 MHz harmonics. To upgrade the existing analog and digital hybrid LLRF control system, reduce the hardware cost, and achieve more flexible control of the system, an FPGA based digital daughter board is designed. The generation, control, and regulation of these three harmonics are all incorporated digitally inside a single FPGA. To reduce the number of RF interfaces on the motherboard, the new daughter board is designed to control the amplitude and phase of the sawtooth waveform with one channel ADC and DAC. To lock the output phase of the sawtooth waveform to the reference signal, a digital phase-locked loop is designed to lock all three harmonics to the external reference signal. The related work, including the system design of the LLRF control system and the development of the digital phase-locked loop, are presented in this paper.
机译:TRIUMF的ARIEL预捆扎机由锯齿波供电,该锯齿波是11.79 MHz,23.57 MHz和35.36 MHz谐波的组合。为了升级现有的模拟和数字混合LLRF控制系统,降低硬件成本,并实现对系统的更灵活控制,设计了一种基于FPGA的数字子板。这三个谐波的生成,控制和调节都以数字方式集成在单个FPGA中。为了减少主板上的RF接口数量,新的子板设计为使用一个通道ADC和DAC控制锯齿波形的幅度和相位。为了将锯齿波的输出相位锁定到参考信号,设计了数字锁相环将所有三个谐波锁定到外部参考信号。本文介绍了相关的工作,包括LLRF控制系统的系统设计和数字锁相环的开发。

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