模拟光链路中的信号处理

T. K. Woodward, T. Banwell, A. Agarwal, P. Toliver, R. Menendez
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引用次数: 9

摘要

对越来越强的态势感知能力的追求创造了对信号处理技术不断改进的需求。航空电子平台在尺寸、重量和功率(SWaP)方面呈现出特别具有挑战性的主机平台,其中射频信号是一个主要感兴趣的领域。数十年来,基础微电子技术的指数级发展与可编程功能的灵活性相结合,使数字信号处理(DSP)成为首选的信号处理方法,但射频信号处理继续表现出重要的模拟方面。模拟信号处理(ASP)仅在系统约束的情况下使用。一个这样的限制来自这样一个事实,即信号通常是从模拟开始的,迫使具有许多模拟方面的模拟到数字转换(ADC)步骤。第二种情况是没有必要的ADC技术的信号处理问题,因此必须至少部分使用ASP。最后,相对于ASP替代方案,DSP任务本身可能过于昂贵。我们在此考虑了光学技术影响这些限制的机会,并讨论了它们的共同挑战,模拟光链路。
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Signal processing in analog optical links
The quest for ever-greater situational awareness creates a need for continuous improvement in signal processing technology. Avionic platforms present a particularly challenging host platform in terms of size, weight, and power (SWaP), with RF signals a major area of interest. Decades of unbroken exponential progress in underlying microelectronics technology combined with the flexibility of programmable function have made digital signal processing (DSP) the signal processing method of choice, yet RF signal processing continues to exhibit significant analog aspects. Analog signal processing (ASP) is used only when a system constraint compels it. One such constraint arises from the fact that signals are generally analog to start with, compelling an analog to digital conversion (ADC) step that has many analog aspects. A second case are classes of signal processing problems for which the necessary ADC technology is not available, for which ASP must be at least partially employed. Finally, the DSP task itself may be too costly relative to an ASP alternative. We consider here opportunities for optical technology to impact these constraints and discuss their common challenge, the analog optical link.
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