Digital signal processing assisted coherent optical receiver for high dynamic range fiber optic networks

T. Clark, M. Dennis, R. Sova
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引用次数: 8

Abstract

A single fiber network transporting the multitude of signals required on an avionics platform can offer benefits of a lightweight and flexible harness, significantly reduced cabling and improved EMI immunity. In addition, the total bandwidth available and the potential for flexible routing in a wavelength division multiplexed (WDM) network further offers future growth capabilities, such as faster data and sensor routing for real time reaction to sensor information, without the need for additional cabling. Digital signals on such a military platform clearly benefits from the increased bandwidth. At present, the high dynamic range required by many of the analog RF signals of interest prevents the use of traditional WDM networks employing erbium or semiconductor optical amplification to overcome network node loss due to the noise added to the system. In this paper, the author proposed a technical direction for achieving a flexible, potentially mixed signal, fiber optic network suitable for the various signals and platforms in a coherent optical network utilizing a DSP-assisted optical I/Q demodulating and microwave downconverting receiver for the high dynamic range signal transport. Such a network would allow high fidelity transport of the most demanding analog RF signals while simultaneously transporting less demanding analog RF and digital signals.
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高动态范围光纤网络中数字信号处理辅助相干光接收机
单个光纤网络传输航空电子平台所需的大量信号,可以提供轻量级和灵活的线束,显着减少布线并提高EMI抗扰性。此外,在波分复用(WDM)网络中可用的总带宽和灵活路由的潜力进一步提供了未来的增长能力,例如更快的数据和传感器路由,以实时响应传感器信息,而无需额外的布线。这种军用平台上的数字信号显然受益于带宽的增加。目前,许多感兴趣的模拟射频信号所需要的高动态范围阻碍了传统WDM网络使用铒或半导体光放大来克服由于系统中添加的噪声而导致的网络节点损耗。本文提出了利用dsp辅助光I/Q解调和微波下变频接收机实现高动态范围信号传输的技术方向,以实现适合于相干光网络中各种信号和平台的灵活、潜在混合信号的光纤网络。这样的网络将允许高保真传输最苛刻的模拟RF信号,同时传输要求较低的模拟RF和数字信号。
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