首页> 外文期刊>Journal of Lightwave Technology >Channel capacity optimization of chirp-limited dense WDM/WDMA systems using OOK/FSK modulation and optical filters
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Channel capacity optimization of chirp-limited dense WDM/WDMA systems using OOK/FSK modulation and optical filters

机译:使用OOK / FSK调制和光学滤波器的线性调频有限密集WDM / WDMA系统的信道容量优化

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摘要

Frequency chirp in semiconductor lasers that are directly modulated through carrier injection not only induces dispersion in long-haul single-mode fiber communication systems, but also causes energy loss and signal distortion when frequency selective elements such as Fabry-Perot filters are present. This effect is significant for high-bit-rate channels in a dense wavelength-division-multiplexed system in a LAN/MAN environment which requires narrow-band filters to suppress crosstalk from adjacent channels. A simulation approach is used to determine the channel capacity in the presence of chirp and crosstalk. The results show that a minimal channel spacing of less than 37 and 10 GHz with each channel operating at 2 Gb/s using OOK and FSK, respectively, can be achieved by a dense wavelength division multiple access system. It is also shown that this system performance can be optimized through adjusting various parameters of the laser and the filter.
机译:通过载流子注入直接调制的半导体激光器中的频率chi不仅会在长距离单模光纤通信系统中引起色散,而且在存在诸如Fabry-Perot滤波器之类的频率选择元件时也会引起能量损耗和信号失真。对于LAN / MAN环境中密集波分多路复用系统中的高比特率信道,此效果非常重要,该系统需要窄带滤波器来抑制来自相邻信道的串扰。在approach和串扰的情况下,使用一种仿真方法来确定信道容量。结果表明,通过密集的波分多址系统,分别使用OOK和FSK以2 Gb / s的速率运行每个信道时,最小信道间隔小于37 GHz和10 GHz。还显示可以通过调整激光器和滤光片的各种参数来优化该系统性能。

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