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Improving the noise performance of communication systems: radio and telephony developments of the 1920s Mischa Schwartz

机译:改善通信系统的噪声性能:1920年代无线电和电话技术的发展Mischa Schwartz

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This article discusses the early pioneering work of both telephone and radio engineers in effecting improvements in the noise performance of communication systems. This work led ultimately to the explosive growth of communication activities following World War II. Radio engineers during the 1920s were most concerned with reducing the impact of externally generated "static," and showed this could be accomplished by the use of directional antennas and moving to higher-frequency transmission. Telephone engineers during that period of time, most prominently John R. Carson of AT&T, were led to include the impact of "fluctuation noise" (shot and thermal noise) as well. Carson, using the then novel concept of noise frequency spectrum, showed how the appropriate choice of bandwidth and frequency of transmission could be used to improve the signal-to-noise ratio, anticipating the concept of a "matched filter" introduced 20 years later during radar developments of World War II. This early work on improving the noise performance of communication systems led, in the early 1930s, to Edwin H. Armstrong's spectacular leap ahead with his invention of wide-deviation low-noise frequency modulation (FM), followed a few years later by the invention by Alec Reeves of pulse code modulation (PCM), the first low-noise digital communication system of the modern era.
机译:本文讨论电话和无线电工程师在改善通信系统噪声性能方面的早期开拓性工作。这项工作最终导致了第二次世界大战后通讯活动的爆炸性增长。 1920年代的无线电工程师最关心的是减少外部产生的“静电”的影响,并表明可以通过使用定向天线并转向更高频率的传输来实现。在这段时间里,电话工程师(最著名的是AT&T的John R. Carson)也被引入了“波动噪声”(散粒和热噪声)的影响。卡森(Carson)使用当时新颖的噪声频谱概念,展示了如何使用适当的带宽和传输频率选择来提高信噪比,并预见了20年后引入的“匹配滤波器”的概念。第二次世界大战的雷达发展。在1930年代初期,这项改进通信系统噪声性能的早期工作使埃德温·H·阿姆斯特朗(Edwin H. Armstrong)发明了宽频低噪声频率调制(FM)技术,取得了惊人的飞跃,随后几年又发明了该技术。脉冲编码调制(PCM)的Alec Reeves撰写,这是现代第一个低噪声数字通信系统。

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