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A simplified radio over fiber balanced system with suppression of both second- and third-order nonlinear distortions

机译:通过抑制第二阶和三阶非线性扭曲的简化无线电平衡系统

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We present a simplified radio over fiber balanced system that uses only one wavelength, optical modulator and fiber. In this balanced system the upper and lower sidebands produced by subcarrier modulation along with its optical carrier are separated before balanced photodetection. Optical time delays are introduced to one of the sidebands by means of two cascaded tunable nonlinearly chirped fiber Bragg gratings. The first nonlinearly chirped fiber Bragg grating produces relative time delay that has the following relationship τdelay ∝ 1/2f, while the second produces a relative time delay of τ delay ∝ 1/f. The first nonlinearly chirped fiber Bragg grating will have a large enough bandwidth and group velocity dispersion to introduce a relative time delay for the subcarrier and second order distortion, while the second will have the bandwidth and group velocity dispersion to introduce a different relative time delay for the third order distortion. The net effect of the relative time delays is to provide a phase shift of π for the subcarrier, second order distortion currents and a phase shift of 2π for the third order distortion current. Simulated results show a suppression of 2nd and 3rd harmonic distortion of 25.4 dB and 2.6 dB, respectively. In the case of 2nd and 3rd intermodulation distortion suppression of 33 dB and 20 dB, respectively have been reported. Simulation also shows that the power penalty improvement is approximately 2.5 dB for bit error rate of 10-9 for subcarrier at 10 and 35 GHz and relative intensity noise is suppressed by 3 dB.
机译:我们在光纤平衡系统上提出了一种简化的无线电,该系统仅使用一个波长,光学调制器和光纤。在该平衡系统中,通过子载波调制和光学载体在平衡的光电检测之前分离了通过子载波调制产生的上边带。光学时间延迟通过两个级联可调非线性啁啾光纤布拉格光栅引入到一个边带中。第一非线性啁啾光纤布拉格光栅产生具有以下关系τdelayα1/ 2f的相对时间延迟,而第二则产生τ延迟α1/ f的相对时间延迟。第一非线性啁啾光纤布拉格光栅将具有足够大的带宽和组速度分散,以引入子载波和二阶失真的相对延迟,而第二个将具有带宽和群体速度色散,以引入不同的相对时间延迟三阶失真。相对时间延迟的净效应是为子载波,第二阶失真电流提供π的相移,并且对于第三阶失真电流为2π的相移。模拟结果分别显示出25.4dB和2.6dB的第2和第3次谐波变形的抑制。在分别报道的情况下,在第2和第3个和第3个互调失真抑制的情况下,已经报道了33dB和20dB的情况。仿真还表明,对于10至9的误码率,电源惩罚提高约为2.5 dB,在10和35 GHz和相对强度噪声被3 dB抑制。

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