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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >An offset tone based gain stabilization technique for mixed-signal RF measurement systems
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An offset tone based gain stabilization technique for mixed-signal RF measurement systems

机译:基于偏置音调的增益稳定技术,用于混合信号RF测量系统

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摘要

This paper describes a gain stabilization technique for a RF signal measurement system. A sinusoidal signal of known amplitude, phase and close enough in frequency is added to the main, to be measured RF signal at the input of the analog section. The system stabilizes this offset tone in the digital domain, as it is sampled at the output of the analog section. This process generates a correction factor needed to stabilize the magnitude of the gain of the analog section for the main RF signal. With the help of a simple calibration procedure, the absolute amplitude of the main RF signal can be measured. The technique is especially suited for a system that processes signals around a single frequency, employs direct signal conversion into the digital domain, and processes subsequent steps in an FPGA. The inherent parallel signal processing in an FPGA-based implementation allows a real time stabilization of the gain. The effectiveness of the technique is derived from the fact, that the gain stabilization stamped to the main RF signal measurement branch requires only a few components in the system to be inherently stable. A test setup, along with experimental results is presented from the field of RF instrumentation for particle accelerators. Due to the availability of a phase synchronized RF reference signal in these systems, the measured phase difference between the main RF and the RF reference is also stabilized using this technique. A scheme of the signal processing is presented, where a moving average filter has been used to filter out not only the unwanted frequencies, but also to separate the main RF signal from the offset tone signal. This is achieved by a suitable choice of sampling and offset tone frequencies. The presented signal processing scheme is suitable to a variety of RF measurement applications.
机译:本文介绍了一种用于射频信号测量系统的增益稳定技术。已知幅度,相位和频率足够接近的正弦信号会被添加到主电源,在模拟部分的输入端被测RF信号。当在模拟部分的输出处对其进行采样时,系统会在数字域中稳定此偏移音。该过程生成稳定主RF信号模拟部分的增益幅度所需的校正因子。借助简单的校准程序,可以测量主RF信号的绝对幅度。该技术特别适用于处理单个频率附近的信号,将信号直接转换为数字域并处理FPGA中后续步骤的系统。基于FPGA的实现中固有的并行信号处理可实现增益的实时稳定。该技术的有效性源于以下事实:加盖在主RF信号测量分支上的增益稳定度仅需要系统中的少数组件具有固有的稳定性。从粒子加速器的射频仪器领域介绍了一种测试装置以及实验结果。由于在这些系统中可以使用相位同步的射频参考信号,因此使用此技术也可以稳定主射频和射频参考之间的测量相位差。提出了一种信号处理方案,其中使用了移动平均滤波器不仅滤除了不需要的频率,而且还从偏移音频信号中分离出了主RF信号。这可以通过适当选择采样频率和偏移音频频率来实现。提出的信号处理方案适用于各种RF测量应用。

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