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Power requirements and operation of amplified optical networks for future aerospace applications

机译:未来航空航天应用的功率要求和放大光网络的运行

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The past 10 years has witnessed a significant rise in the interest in optical networks for the next generation of avionic communications. Although an optical network onboard an aircraft will be relatively short, with lengths up to hundreds of metres rather than kilometres, the backbone loss can still be high. There may be many interconnections through bulkheads, for installation and maintenance with high losses over the operating environment. Also, slip-rings, wavelength filters and splitters are other sources of attenuation. In many cases, amplification will be required to overcome these losses. Semiconductor Optical Amplifiers (SOAs) provide a cost effective means for this amplification over a wavelength range of between 850 nm and 1600 nm [1].
机译:过去10年目睹了下一代航空电子通信的光网络兴趣显着上升。虽然飞机上的光学网络将相对较短,但长度长达数百米而不是公里,骨干损耗仍然很高。通过舱壁可能存在许多互连,用于在操作环境中具有高损耗的安装和维护。此外,滑环,波长过滤器和分离器是其他衰减源。在许多情况下,将需要放大来克服这些损失。半导体光学放大器(SOA)在850nm和1600nm之间的波长范围内提供该扩增的成本有效的方法。

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