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首页> 外文期刊>Electrical Engineers, Proceedings of the Institution of >Waveguide for long-distance communication. A swept-frequency method for automatic recording of waveguide attenuation
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Waveguide for long-distance communication. A swept-frequency method for automatic recording of waveguide attenuation

机译:用于长距离通信的波导。自动记录波导衰减的扫频方法

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A common method of measuring characteristics of waveguides for long-distance communication involves the use of millimicrosecond pulses in a multiple-reflection test; test waveguides of a few hundred feet in length are employed. The enormous bandwidth, typically 40 Gc/s, which must be covered constitutes a major difficulty because several thousand measurements are necessary if the guide is to be adequately tested. A programme of measurements would then take months to complete, so that not only daily, but seasonal, weather effects would have to be considered. In order to make complete tests possible, novel equipment capable of rapid graphical presentation has been developed. The construction of a swept-frequency receiver employing a backward-wave oscillator (b.w.o.) as both signal source and local oscillator is described. A square wave applied to the frequency-controlling electrode switches the b.w.o. into two states: signal frequency (100 ns duration) and local oscillator (1 ms duration). A graphical presentation is obtained by sweeping the b.w.o. slowly through its tuning range. Errors resulting from the inherent b.w.o. power variation with frequency are avoided by comparing the magnitude of the pulses, derived from multiple reflection in the guide under test, on a ratio basis. Pulses to be compared are gated into separate channels where they are converted into a suitable form for operating a commercial ratio meter. The output of the latter feeds a pen recorder. Facilities for providing frequency markers are incorporated. The apparatus provides a complete record of the frequency characteristics of the guide in about half-an-hour.
机译:测量长距离通信波导特性的常用方法是在多重反射测试中使用毫秒脉冲。使用了几百英尺长的测试波导。必须覆盖的巨大带宽(通常为40 Gc / s)构成了主要困难,因为如果要对指南进行适当的测试,则必须进行数千次测量。然后,一个测量程序将需要数月的时间才能完成,因此不仅要考虑每天的影响,而且要考虑季节性的天气影响。为了使完整的测试成为可能,已经开发了能够快速图形显示的新型设备。描述了采用反向波振荡器(b.w.o.)作为信号源和本地振荡器的扫频接收机的结构。施加到频率控制电极上的方波会切换b.w.o。分为两种状态:信号频率(持续时间为100 ns)和本地振荡器(持续时间为1 ms)。通过扫视b.w.o获得图形表示。慢慢地调整其范围。由于固有的b.w.o而导致的错误通过在比率基础上比较由被测导板的多次反射得出的脉冲幅度,可以避免功率随频率变化。将要比较的脉冲选通到单独的通道中,在该通道中,它们将转换成适合于运行商用比率计的形式。后者的输出馈入笔式记录器。包含了提供频率标记的工具。该设备可在大约半小时内提供指南频率特性的完整记录。

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