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Simultaneous Dense Differential Phase-Shift Keying Wavelength Division Multiplexing Signal Quality Observation Based on Sequential Ultrafast Field Sampling

机译:基于顺序超快速场采样的同时密集差分相移键控波分复用信号质量观测

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This paper describes a signal quality monitoring technique for wavelength division multiplexing (WDM) signals that uses an ultrafast field sampling approach, where the observed signal is parallelly sampled with $N$ channel coherent mixers that include a delay of $nT$ , where $n$ is the channel number and $T$ is the unit delay. Previously, we demonstrated that the technique was able to monitor ON-OFF Keying WDM signals with the aid of a digital finite impulse response filter. In this paper we apply the technique to a dual-channel sampling configuration to monitor differential phase-shift keying (DPSK) WDM signals. We show that the dual 16-branch serial sampling of the total field allows us to observe an 8-ch 25 Gb/s DPSK signal with a total data rate of 200 Gb/s. In addition, the measurement result is comparable to the result obtained by using an optical filter. We also confirm that the technique is capable of monitoring the optical signal to noise ratio (OSNR) up to over 20 dB. Moreover, by adaptively changing the filter profile, we simulate the dependence of the OSNR on the filter profile. In this paper, the technique uses an equivalent sampling approach with a sampling pulse that has a repetition frequency (sampling rate) as low as 10 MHz, so the use of the technology is limited to monitoring the signal. The technique can be used to receive an actual data transmission if the sampling rate is $1/{NT}$, where $N$ is the number of channels.
机译:本文介绍了一种用于波分复用(WDM)信号的信号质量监视技术,该技术使用超快速场采样方法,其中观察到的信号通过 $ N并行采样$ 通道相干混合器,其中包括 $ nT $ 的延迟,其中 $ n $ 是通道号,而 $ T $ 是单位延迟。以前,我们证明了该技术能够借助数字有限脉冲响应滤波器来监视开关键控WDM信号。在本文中,我们将该技术应用于双通道采样配置,以监控差分相移键控(DPSK)WDM信号。我们展示了总场的双16分支串行采样使我们能够观察到8通道25 Gb / s DPSK信号,总数据速率为200 Gb / s。另外,测量结果与通过使用滤光器获得的结果相当。我们还确认该技术能够监视高达20 dB以上的光信噪比(OSNR)。此外,通过自适应地更改滤波器轮廓,我们模拟了OSNR对滤波器轮廓的依赖性。在本文中,该技术使用等效采样方法,其采样脉冲的重复频率(采样率)低至10 MHz,因此该技术的使用仅限于监视信号。如果采样率为 $ 1 / {NT} $ ,其中,则该技术可用于接收实际的数据传输。 Formulatype =“ inline”> $ N $ 是通道数。

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