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首页> 外文期刊>Nuclear instruments and methods in physics research >Design and evaluation of a low-level RF control system analog/digital receiver for the ILC main LINACs
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Design and evaluation of a low-level RF control system analog/digital receiver for the ILC main LINACs

机译:用于ILC主LINAC的低级RF控制系统模拟/数字接收机的设计和评估

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摘要

The proposed RF distribution scheme for the two 15 km long ILC LINACs uses one klystron to feed 26 superconducting RF cavities operating at 1.3 GHz. For a precise control of the vector sum of the signals coming from the SC cavities, the control system needs a high-performance, low-cost, reliable and modular multichannel receiver. At Fermilab we developed a 96-channel, 1.3 GHz analog/digital receiver for the ILC LINAC LLRF control system. In this paper we present a balanced design approach to the specifications of each receiver section, the design choices made to fulfill the goals and a description of the prototyped system. The design is tested by measuring standard performance parameters, such as noise figure, linearity and temperature sensitivity. Measurements show that the design meets the specifications and it is comparable to other similar systems developed at other laboratories, in terms of performance.
机译:为两个15公里长的ILC LINAC提议的RF分配方案使用一个速调管为26个工作在1.3 GHz的超导RF腔供电。为了精确控制来自SC腔的信号的矢量和,控制系统需要高性能,低成本,可靠的模块化多通道接收器。在Fermilab,我们为ILC LINAC LLRF控制系统开发了96通道,1.3 GHz模拟/数字接收器。在本文中,我们针对每个接收器部分的规范提出了一种平衡的设计方法,为实现目标进行了设计选择,并对原型系统进行了描述。通过测量标准性能参数(例如噪声系数,线性和温度敏感性)来测试设计。测量表明该设计符合规格,并且在性能方面可以与其他实验室开发的其他类似系统相媲美。

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