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Bit-error-rate improvement of binary phase-shift keying signals with an optoelectronic regenerator based on the feed-forward control of a LiNbO3 intensity modulator

机译:基于LiNbO3强度调制器的前馈控制的光电再生器改善二进制相移键控信号的误码率

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This study evaluates the performance of an optoelectronic regenerator based on feed-forward control of a LiNbO3 intensity modulator for optical binary phase-shift keying (BPSK) signals. First, in order to confirm the operation principle, we measure the transfer function of the regenerator in terms of the optical power, and observe the power limiting effect. Next, we numerically and experimentally evaluate the performance of the regenerator for 10-Gbit/s optical BPSK signals where BER is measured for various receiver OSNR. We obtain a received power improvement of approximately 1 dB at a bit error rate of 10(-4). Finally, we compare the regenerator performance for BPSK signals with that for differential phase-shift keying (DPSK) signals by calculating the BERs with offline digital signal processor for identical experimental data. It is shown that the regenerator is more effective for BPSK signals than for DPSK signals because DPSK signals are more fragile against phase fluctuation that cannot be suppressed by our regenerator. (C) 2015 Elsevier Inc. All rights reserved.
机译:这项研究基于对光二进制相移键控(BPSK)信号的LiNbO3强度调制器的前馈控制,评估了光电再生器的性能。首先,为了确定操作原理,我们根据光功率测量再生器的传递函数,并观察功率限制效果。接下来,我们在数字上和实验上评估再生器针对10 Gb / s光学BPSK信号的性能,其中针对各种接收器OSNR测量BER。我们以10(-4)的误码率获得了大约1 dB的接收功率改善。最后,通过使用离线数字信号处理器针对相同的实验数据计算BER,我们将BPSK信号的再生器性能与差分相移键控(DPSK)信号的再生器性能进行了比较。结果表明,对于BPSK信号,再生器比DPSK信号更有效,因为DPSK信号对于相位波动更脆弱,而相位波动是我们的再生器无法抑制的。 (C)2015 Elsevier Inc.保留所有权利。

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