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A DSP-based beam current monitoring system for machine protection using adaptive filtering

机译:基于DSP的用于机器保护的束流电流监控系统,采用自适应滤波

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The CEBAF accelerator at Jefferson Lab is currently using an analog beam current monitoring (BCM) system for its machine protection system (MPS), which has a loss accuracy of 2 /spl mu/A. Recent burn-through simulations predict catastrophic beam line component failures below 1 /spl mu/A of loss, resulting in a blind spot for the MPS. The revised MPS requirements target an ultimate beam loss accuracy of 250 nA. A new beam current monitoring system has been developed which utilizes modern digital receiver technology and digital signal processing concepts. The receiver employs a direct-digital down converter integrated circuit, mated with a Jefferson Lab digital signal processor VME card. Adaptive filtering is used to take advantage of current-dependent burn through rates. Benefits of such a system include elimination of DC offsets, generic algorithm development, extensive filter options, and interfaces to UNIX-based control systems.
机译:杰斐逊实验室的CEBAF加速器当前正在为其机器保护系统(MPS)使用模拟束电流监控(BCM)系统,其损失精度为2 / spl mu / A。最近的烧穿模拟预测,灾难性的光束线组件故障的损失低于1 / spl mu / A,导致MPS出现盲点。修订后的MPS要求的最终光束损耗精度为250 nA。已经开发出一种利用现代数字接收器技术和数字信号处理概念的新型束电流监视系统。接收器采用直接数字下变频器集成电路,并与Jefferson Lab数字信号处理器VME卡配合使用。自适应滤波用于充分利用电流相关的烧穿率。这种系统的好处包括消除DC偏移,通用算法开发,广泛的滤波器选项以及与基于UNIX的控制系统的接口。

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