射频系统的光子学

S. Pappert, R. Esman, B. Krantz
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引用次数: 8

摘要

由于固有的大时间带宽产品和吸引人的尺寸和重量特征,光子技术长期以来一直被认为是有价值的,因为它具有扩展传感和信号处理性能和能力的潜在能力。射频信号产生、射频信号分布、射频延迟线、快速可调射频滤波和宽带微波阵列的实时延迟(TTD)处理只是射频光子器件和处理器的宽带特性可以在射频系统应用中得到突出体现的几个领域。为了继续满足未来应用的需求,高灵敏度下的射频系统带宽和动态范围必须继续提高,远远超过当前的性能水平;光子学为实现这一目标提供了一种有吸引力的方法。本文综述了微波光子技术在射频前端信号处理方面的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photonics for RF systems
Owing to inherently large time-bandwidth products and attractive size and weight features, photonics technology has long been recognized as valuable for its potential ability to extend sensing and signal processing performance and capabilities. RF signal generation, RF signal distribution, RF delay lines, fast tunable RF filtering and true-time-delay (TTD) processing for wideband microwave arrays are just a few of the areas where the broadband features of RF photonic devices and processors can be highlighted for RF system applications. To continue to meet the needs of future applications, RF system bandwidth and dynamic range at high sensitivity must continue to increase well beyond current performance levels; photonics provides an attractive approach for accomplishing this. This paper reviews recent developments in microwave photonic technology relevant to RF front-end signal processing.
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