In order to reduce the four-wave mixing crosstalk and avoid the signal waveform distortion in long-haul dense-wavelength division multiplexing systems,helpful methods on how to choose suitable local parameters in high...In order to reduce the four-wave mixing crosstalk and avoid the signal waveform distortion in long-haul dense-wavelength division multiplexing systems,helpful methods on how to choose suitable local parameters in higher-order dispersion managed line are presented, which are used to increase the system capacity and improve the system performances.展开更多
A scheme of WDM+ OCDMA system employing optical hard-limiter(OHL) is proposed, and its performance of normalized throughput is analyzed. The upper bound of the normalized throughput is obtained when all the simulta...A scheme of WDM+ OCDMA system employing optical hard-limiter(OHL) is proposed, and its performance of normalized throughput is analyzed. The upper bound of the normalized throughput is obtained when all the simultaneous users are equally allocated to different wavelength channels. The lower bound of the normalized throughput is obtained when all the simultaneous users are firstly allocated to the same wavelength channels. Compared with the performance of VVDM+ OCDMA system without OHL, both the upper bound and lower bound of the normalized throughput in WDM + OCDMA system with OHL can be improved.展开更多
文摘In order to reduce the four-wave mixing crosstalk and avoid the signal waveform distortion in long-haul dense-wavelength division multiplexing systems,helpful methods on how to choose suitable local parameters in higher-order dispersion managed line are presented, which are used to increase the system capacity and improve the system performances.
基金This work was supported by National Natural Science Foundationof China(No.60132040) Guangdong Provincial Natural Sci-ence Foundation of China(No.5301028 04300855)
文摘A scheme of WDM+ OCDMA system employing optical hard-limiter(OHL) is proposed, and its performance of normalized throughput is analyzed. The upper bound of the normalized throughput is obtained when all the simultaneous users are equally allocated to different wavelength channels. The lower bound of the normalized throughput is obtained when all the simultaneous users are firstly allocated to the same wavelength channels. Compared with the performance of VVDM+ OCDMA system without OHL, both the upper bound and lower bound of the normalized throughput in WDM + OCDMA system with OHL can be improved.