Title :
CEBAF new digital LLRF system extended functionality
Author :
Allison, T. ; Davis, K. ; Dong, H. ; Hovater, C. ; King, L. ; Musson, J. ; Plawski, T.
Author_Institution :
Jefferson Lab., Newport News
Abstract :
The new digital LLRF system for the CEBAF 12GeV accelerator will perform a variety of tasks, beyond field control [1]. In this paper we present the superconducting cavity resonance control system designed to minimize RF power during gradient ramp and to minimize RF power during steady state operation. Based on the calculated detuning angle, which represents the difference between reference and cavity resonance frequency, the cavity length will be adjusted with a mechanical tuner. The tuner has two mechanical driving devices, a stepper motor and a piezo-tuner, to yield a combination of coarse and fine control. Although LLRF piezo processing speed can achieve 10 kHz bandwidth, only 10 Hz speed is needed for 12 GeV upgrade. There will be a number of additional functions within the LLRF system; heater controls to maintain cryomodule´s heat load balance, ceramic window temperature monitoring, waveguide vacuum interlocks, ARC detector interlock and quench detection. The additional functions will be divided between the digital board, incorporating an Altera FPGA and an embedded EPICS IOC. This paper will also address hardware evolution and test results performed with different SC cavities.
Keywords :
accelerator RF systems; accelerator cavities; accelerator control systems; linear accelerators; superconducting cavity resonators; ARC detector interlock; Altera FPGA; CEBAF accelerator; CEBAF digital LLRF system; EPICS IOC; ceramic window temperature monitoring; cryomodule heat load balance; electron volt energy 12 GeV; mechanical tuner; superconducting cavity resonance control system; waveguide vacuum interlocks; Bandwidth; Ceramics; Control systems; Radio frequency; Resonance; Resonant frequency; Steady-state; Temperature control; Temperature measurement; Tuners;
Conference_Titel :
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location :
Albuquerque, NM
Print_ISBN :
978-1-4244-0916-7
DOI :
10.1109/PAC.2007.4441293