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饱和非均匀光纤中啁啾孤子的频谱特性研究 被引量:2
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作者 薛瑞荣 贾鹤萍 杨荣草 《光学学报》 EI CAS CSCD 北大核心 2020年第22期171-179,共9页
基于包含拉曼效应的三次-五次变系数非线性薛定谔方程的啁啾孤子解,研究了周期色散分布的饱和非均匀光纤系统中啁啾单孤子和双孤子的频谱演化特性。结果表明,在均匀光纤和非均匀光纤中,由于高阶效应仅与孤子的相位相关,因此高阶效应不... 基于包含拉曼效应的三次-五次变系数非线性薛定谔方程的啁啾孤子解,研究了周期色散分布的饱和非均匀光纤系统中啁啾单孤子和双孤子的频谱演化特性。结果表明,在均匀光纤和非均匀光纤中,由于高阶效应仅与孤子的相位相关,因此高阶效应不会影响孤子时域中的波形,但会直接影响孤子的频谱。在均匀光纤中,孤子啁啾参数约化为零,高阶效应使无啁啾的单孤子频谱发生红移,且频谱的高频侧出现旁瓣;相对于单孤子,平行演化和相互碰撞的双孤子的频谱均会产生分裂,而高阶效应会加剧双孤子频谱的分裂。与均匀光纤中单孤子和双孤子的特性相比,在周期色散分布光纤中,啁啾参数周期性的变化导致单孤子的脉宽和频谱周期性地被压缩和展宽;而对于双孤子,在碰撞时其频谱出现极大展宽,啁啾使准平行传输和相互碰撞的双孤子在相互靠近时的频谱发生蓝移,而高阶效应使其频谱发生红移。研究结果对研究超快光通信系统中高功率信号的频谱特性具有重要的意义。 展开更多
关键词 非线性光学 非均匀光纤 均匀光纤 啁啾孤子 高阶效应 频谱
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Impact of Down Spinning Reserve on Operation Reliability of Power Systems 被引量:4
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作者 Yang Yang Minglei Bao +3 位作者 Yi Ding heping jia Zhenzhi Lin Yusheng Xue 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2020年第4期709-718,共10页
The development of renewable energy and the increasing peak-valley difference of load demand lead to an increasing requirement of spinning reserve(SR).However,the traditional operation reliability analysis of power sy... The development of renewable energy and the increasing peak-valley difference of load demand lead to an increasing requirement of spinning reserve(SR).However,the traditional operation reliability analysis of power system mainly focuses on the up SR and neglects the down SR.Therefore,the operation reliability of power system considering the impacts of down SR is investigated in this paper.Firstly,the constraints of down SR are incorporated into the day-ahead unit commitment(UC)model to obtain the generation scheduling and reserve allocation of power systems.Based on the dispatch results of UC model,the re-dispatched energy and load interruption can be determined using optimal power flow(OPF)model in the realtime operation in various contingency states.Operation reliability indices are calculated based on the load curtailment to represent the reliability performances of power systems.The proposed approaches are validated using the modified IEEE reliability test system.Case studies demonstrate that down SR can improve the operation reliability of power systems. 展开更多
关键词 Down spinning reserve operation reliability evaluation unit commitment(UC) optimal power flow(OPF)
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