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Impact of thermal drifts in LED spectrally sliced WDM systems

机译:LED光谱切片WDM系统中热漂移的影响

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摘要

In LED spectrally sliced wavelength division multiplexed (WDM) systems the optical crosstalk caused by spectral overlapping of adjacent wavelength channels is known to depend on the source spectrum. However, the LED output is temperature dependent and therefore the crosstalk performance of such a system may be expected to vary with operating temperature drifts of the optical source. These effects are theoretically explored to estimate the subsequent performance degradation due to optical crosstalk. Analytical expressions developed indicate that the optical crosstalk noise-to-signal ratio for all spectrally sliced wavelength channels has very little dependence on the LED operating temperature. However, the optical power coupled into a spectrally sliced channel is strongly dependent on the source operating temperature which can cause a depletion of optical power levels within channels placed at the extremes of the source emission spectrum. Hence, the LED source may be employed without any temperature control when precautions are taken in the case of channels located at the tail-ends of the source emission spectrum.
机译:在LED光谱切片的波分复用(WDM)系统中,已知由相邻波长通道的光谱重叠引起的光学串扰取决于源光谱。但是,LED输出取决于温度,因此,这种系统的串扰性能可能会随光源的工作温度漂移而变化。从理论上探讨了这些效应,以估计由于光学串扰而导致的后续性能下降。所开发的分析表达式表明,所有光谱切分的波长通道的光学串扰噪声与信号之比对LED工作温度的依赖性很小。但是,耦合到光谱切分的通道中的光功率在很大程度上取决于光源的工作温度,这可能导致位于光源发射光谱极端处的通道中的光功率水平耗尽。因此,当在通道位于源发射光谱的尾端的情况下采取预防措施时,可以在没有任何温度控制的情况下使用LED源。

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