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Frequency-agile vector signal generation based on optical frequency comb and pre-coding

机译:基于光学频率梳和预编码的频率 - 敏捷矢量信号产生

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摘要

In this paper, we experimentally demonstrate the generation of frequency-agile vector signals based on an optical frequency comb (OFC) and unbalanced pre-coding technology by employing a dual-driven Mach-Zehnder Modulator (DD-MZM) and an intensity modulator (IM). The OFC is generated by the DD-MZM and sent to the IM as a carrier. The IM is driven by a 5 GHz 2 Gbaud quadrature phase-shift keying (QPSK) vector signal with unbalanced pre-coding. The -1st order sideband of one OFC line and the + 1st order sideband of another OFC line are selected by a programmable pulse shaper (PPS), after square-low photodiode detection, the frequency-agile vector signal can be obtained. The results show that the 2 Gbaud QPSK vector signals at 30 GHz, 50 GHz, 70 GHz and 90GHz can be generated by only pre-coding once. It is possible to achieve a bit-error-rate (BER) below 1e-3 for wireless transmissions over 0.5m using this method.
机译:在本文中,我们通过采用双驱动Mach-Zehnder调制器(DD-MZM)和强度调制器( 我是)。 OFC由DD-MZM生成,并将其发送到IM作为载波。 IM由5 GHz 2 GBaud正交相移键控(QPSK)矢量信号驱动,具有不平衡预编码。 在Square-Low光电二极管检测之后,通过可编程脉冲整形器(PPS)选择另一个线路的-1的-1ST达到另一个+ 1阶边界的边界。 结果表明,仅通过预编码一次生成30 GHz,50 GHz,70 GHz和90GHz的2 GBaud QPSK矢量信号。 可以使用该方法实现1E-3以下1E-3的误码率(BER)。

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