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Ultra-high-frequency techniques applied to mobile and fixed communication services

机译:超高频技术应用于移动和固定通信服务

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摘要

The present paper outlines the communication techniques at present under development for ultra-high frequencies. The subjects discussed fall under the following headings:- (a) Valves. (b) Frequency control. (c) Modulation. (d) Power amplifiers and frequency multipliers. (e) Signal amplifiers. (f) Frequency changers. (g) Aerials. It is shown that from the great diversity of techniques available, a communication system can be designed to perform almost any desired function, so long as the distance from transmitter to receiver is less than the optical range. Examples of u.h.f. systems made and tested in Admiralty Signal Establishment are described. Particular attention is drawn to the fact that microwave sets can now be made with the same stability (measured in kc/s) as the average high-frequency set had before the war, and to the fact that microwave radio-telephone circuits can now be made with a signaloise ratio of 80 db, the length of the circuit being the optical distance from transmitter to receiver.
机译:本文概述了目前正在开发的超高频通信技术。讨论的主题归为以下标题:(a)阀门。 (b)频率控制。 (c)调制。 (d)功率放大器和倍频器。 (e)信号放大器。 (f)变频器。 (g)天线。结果表明,从可用的多种技术中,可以将通信系统设计为执行几乎任何所需的功能,只要从发射机到接收机的距离小于光学范围即可。特例描述了在金钟信号建立中制造和测试的系统。特别要注意的是,现在可以以与战前平均高频设备相同的稳定性(以kc / s为单位)制造微波设备,并且现在可以使用微波无线电话电路。信噪比为80 db时,电路长度就是从发射机到接收机的光学距离。

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