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The design of an equipment for measuring small Radio-Frequency noise powers

机译:测量小型射频噪声功率的设备的设计

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The paper discusses the design of an equipment for the continuous recording of the very small r.f. noise powers received from the sun and the galaxy. It is first shown how a noise power can be described in terms of an equivalent temperature, and how cable attenuation affects the noise power measured at the end of an aerial feeder. The fundamentals of the measurement of noise power are considered; it is shown that the minimum detectable power is determined by the receiver noise and by the ratio of input and output bandwidths of the receiver. The practical difficulties inherent in the measurement have been overcome by the design of a self-balancing equipment in which a locally generated noise power is continuously adjusted to equality with the incoming power. A description of such an equipment is given; the design of the r.f. switch, the local noise source, the receiver and the control circuits for the noise source are considered in some detail. The performance of the equipment is analysed in terms of its accuracy, its response to a step function of input and the fluctuations of its output indication. Experimental determinations of the performance are found to compare reasonably well with theory.
机译:本文讨论了用于连续记录非常小的射频信号的设备的设计。来自太阳和银河系的噪声功率。首先显示了如何用等效温度来描述噪声功率,以及电缆衰减如何影响在天线馈线末端测得的噪声功率。考虑了噪声功率测量的基本原理;结果表明,最小可检测功率由接收器噪声以及接收器的输入和输出带宽之比确定。通过设计一种自平衡设备可以克服测量中固有的实际困难,在该设备中,可以将本地产生的噪声功率连续调节为与输入功率相等。给出了这种设备的描述。射频的设计开关,本地噪声源,接收器以及噪声源的控制电路都经过了详细考虑。根据设备的精度,对输入阶跃函数的响应以及其输出指示的波动来分析设备的性能。发现性能的实验确定可以合理地与理论进行比较。

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