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首页> 外文期刊>低温工学 >Present Status and Future Prospects of High-temperature Superconducting Cryogenic Receiver Front-ends for Mobile Base Stations
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Present Status and Future Prospects of High-temperature Superconducting Cryogenic Receiver Front-ends for Mobile Base Stations

机译:高温超导 低温 接收机前端 的 现状和未来 展望 移动基站

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摘要

An experimental 2-GHz band Cryogeic Receiver Front-End (CRFE) has been newly developed for IMT-2000 cellular radio base stations. It uses a high-Q high-temperature superconducting filter (HTSF), a cryogenic low-noise amplifier (CLNA), and a highly reliable cooler that is very compact. TRhe ideal frequency selectivity realized with the HTSF and the virtually noise-free receiver performance made possible by the cryogenic operation are expected to achieve various sysem improvements that are not available with any existing normal temperature receiver frontend. First, the basic radio zone design for a nationwide cellular system is introduced as well as fundamental radio base station construction. It is shown that existing superconducting devices are most effective when applied to the receiver front end of the base station. Next, the basic circuit configuration of the CRFE is considered, and fundamental characteristics of the developed CRFE are measured to confirm that ultralow noise and high selectivity can be achieved. Moreover, the influence of antenna noise, including ground thermal noise and man-made noise, on CRFE is experimentally estimated. Finally, the system merits obtained by applying CRFE to IMT-2000 are predicted, and expectations of future developments in superconducting devices are discussed.
机译:对于IMT-2000蜂窝无线电基站,新开发了一个实验的2-GHz带Cryogeic接收器前端(CRFE)。它采用高Q高温超导滤波器(HTSF),低温低噪声放大器(CLNA)以及非常紧凑的高度可靠的冷却器。使用HTSF实现的TRHE理想的频率选择性和通过低温操作可以实现的几乎无噪音接收器性能,以实现任何现有的常温接收器前端不可用的各种SYSEM改进。首先,介绍了全国范围的蜂窝系统的基本无线电区设计以及基本的无线电基站施工。结果表明,当施加到基站的接收器前端时,现有的超导装置最有效。接下来,考虑CRFE的基本电路配置,测量显影CRFE的基本特性以确认可以实现超级噪声和高选择性。此外,在CRFE上的天线噪声(包括地面热噪声和人为噪声)的影响是通过实验估算的。最后,预测了通过将CRFE应用于IMT-2000而获得的系统优点,讨论了超导装置中未来发展的期望。

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