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The application of frequency modulation to v.h.f. multi-channel radiotelephony

机译:频率调制在v.h.f.多通道无线电话

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摘要

The application of frequency modulation to multi-channel v.h.f. radio links for mainland-to-island communication and for use across broad estuaries is discussed. As the radio links form part of the trunk telephone network of the country, a high standard of performance and reliability is essential, and the equipment has to be capable of continuous unattended operation. To facilitate connection with the trunk network the system is designed to accommodate up to twelve channels, each of 4 kc/s bandwidth, in the frequency range 60????????108 kc/s. The radio links at present in use operate in the frequency range 45????????80 Mc/s, the frequency deviation being ???????± 300 kc/s. The factors determining the signaloise ratio are discussed, and it is shown that most applications permitting optical paths between transmitter and receiver aerials require radiated powers of about 10 watts when using frequency modulation, whereas, with amplitude modulation, 100 watts are needed. An additional advantage of frequency modulation is that the inter-channel crosstalk is not a function of valve-characteristic curvature; it is pointed out, however, that when using frequency modulation it is essential that the phase/frequency characteristic of the system should be substantially linear if the interchannel crosstalk is to be reduced to an adequately low level. Typical transmitting and receiving equipments are described, and their individual performance characteristics given. Finally, the performance of such equipment on optical and long non-optical links is discussed.
机译:频率调制在多通道v.h.f.中的应用讨论了用于大陆对岛屿的通信以及在广泛的河口中使用的无线电链路。由于无线电链路是该国家中继电话网络的一部分,因此,高标准的性能和可靠性至关重要,并且设备必须能够连续无人值守运行。为了促进与干线网络的连接,该系统被设计为在60 ??????? 108 kc / s的频率范围内容纳多达12个通道,每个通道的带宽为4 kc / s。当前使用的无线电链路的工作频率范围为45°C≤80Mc/ s,频率偏差为±300kc / s。讨论了确定信噪比的因素,结果表明,大多数使用发射机和接收机天线之间的光路的应用在使用频率调制时都需要约10瓦的辐射功率,而在使用幅度调制时,则需要100瓦的辐射功率。调频的另一个优点是通道间的串扰不是阀特性曲率的函数;但是要指出的是,在使用频率调制时,如果要将通道间的串扰降低到足够低的水平,则系统的相位/频率特性必须基本是线性的。描述了典型的发送和接收设备,并给出了它们各自的性能特征。最后,讨论了此类设备在光学和长非光学链路上的性能。

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