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首页> 外文期刊>Journal of Lightwave Technology >Optimization of large-scale fiber sensor arrays incorporating multiple optical amplifiers. Part II: pump power
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Optimization of large-scale fiber sensor arrays incorporating multiple optical amplifiers. Part II: pump power

机译:合并了多个光放大器的大型光纤传感器阵列的优化。第二部分:泵浦功率

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摘要

For part I see, ibid., p. 218, 1998. We discuss how to minimize the pump power required for large-scale fiber sensor arrays employing erbium-doped fiber amplifier (EDFA) telemetry with respect to the number of amplifiers per bus, number of sensors per rung, and the gain per amplifier. For a large array, the pump power requirement is dominated by passive component losses along the array. We investigate several methods, including alternative array topologies, to reduce the power requirement while minimizing the impact on the signal-to-noise ratio (SNR). We define an optimum topology which requires less than 1 W of 1480 nm pump power per bus to support 200 high sensitivity (1 /spl mu/rad//spl radic/(Hz)) sensors on a pair of fiber buses, a power requirement that is reasonable and attainable with available laser diodes.
机译:我看到的部分同上,p。 1998年第218页。我们讨论如何相对于每条总线的放大器数量,每行的传感器数量和每条增益,使采用掺-光纤放大器(EDFA)遥测的大型光纤传感器阵列所需的泵浦功率最小化。放大器。对于大型阵列,泵浦功率要求主要由沿阵列的无源组件损耗决定。我们研究了包括替代阵列拓扑在内的几种方法,以降低功耗要求,同时最大程度地减小对信噪比(SNR)的影响。我们定义了一种最佳拓扑,每条总线需要不到1 W的1480 nm泵浦功率,才能在一对光纤总线上支持200个高灵敏度(1 / spl mu / rad // spl radic /(Hz))传感器,这是功率要求使用可用的激光二极管是合理且可达到的。

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