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引用次数: 0

摘要

由于使用手动调谐的收发器多路复用器*,陆军指挥地点的每个固定频率收发器不再需要安装单独的桅杆天线。这大大增加了指挥官的机动性。然而,这些手动调谐的收发多路复用器与跳频ECCM技术不兼容,该技术将被纳入下一代甚高频作战网无线电(CNR)。除非开发出用于跳频收发器的收发器多路复用器,否则指挥站点将恢复到为每个跳频收发器安装单独的天线。美国陆军正在研究跳频收发多路复用器的概念和可行性。一种采用螺旋谐振滤波器、PIN二极管开关电容器和正交耦合器的组合电路和天线匹配电路是最乐观的设计,尽管其插入损耗不符合当前要求。
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Antenna Multiplexer for VHF Frequency Hopping Radios
With the use of a manually tuned transceiver multiplexer*, it is no longer necessary for each fixed frequency transceiver at an Army command site to require erection of a separate mast-mounted antenna. This has greatly increased the commander's mobility. However, these manually tuned transceiver multiplexers are incompatible with the frequency hopping ECCM technique which is to be incorporated into the next generation of VHF combat net radios (CNR). Unless a transceiver multiplexer for frequency hopping transceivers is developed, command sites will revert back to erecting a separate mast-mounted antenna for each frequency hopping transceiver. The US Army is investigating the concept and feasibility of a frequency hopping transceiver multiplexer. An approach which uses helical resonator filters, PIN diode switched capacitors and quadrature couplers for combiner and antenna matching circuits represents the most optimistic design, though its insertion loss does not meet current requirements.
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