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Symmetric and asymmetric Hall effect-like splitting of optical Stokes skyrmions via a hybrid multi-zone filter
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作者 TIAN XIA JIA MA +1 位作者 ZHENWEI XIE XIAOCONG YUAN 《Photonics Research》 2025年第5期1365-1374,共10页
In recent years,optical skyrmions have garnered increasing attention for their ability to introduce new degrees of freedom in manipulating optical fields.While most research has focused on creating innovative optical ... In recent years,optical skyrmions have garnered increasing attention for their ability to introduce new degrees of freedom in manipulating optical fields.While most research has focused on creating innovative optical topological states such as merons and hopfions,there has been limited exploration into their manipulation,which hinders practical applications in this field.In this study,we utilize a hybrid multi-zone filter to induce a Hall effect-like splitting of optical Stokes skyrmions(HESSs),enabling effective separation and manipulation.By manipulating the horizontal phase gradient parameter,we independently control the separation angle of skyrmions.Additionally,we demonstrate control over the topological charge parameter to achieve symmetric and asymmetric HESSs.This effect not only enhances the manipulation capabilities of optical fields but also opens up potential applications for high precision displacement measurements and preservation quantum information. 展开更多
关键词 creating innovative optical topological states symmetric asymmetric splitting stokes skyrmions hesss enabling hybrid multi zone filter optical Stokes skyrmions manipulating optical fieldswhile Hall effect topological charge
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零碳园区电-氢混合储能系统多目标优化配置 被引量:19
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作者 张驰 周骏 +2 位作者 赵镔 李嘉乐 杨博 《电力建设》 CSCD 北大核心 2022年第8期1-12,共12页
随着氢气生产和储存技术的快速发展,开发氢气储能系统(hydrogen energy storage systems, HESSs)将给能源和电力系统结构带来根本性变化。HESSs和电池储能系统(battery energy storage systems, BESSs)相结合进行协调优化可以解决多种... 随着氢气生产和储存技术的快速发展,开发氢气储能系统(hydrogen energy storage systems, HESSs)将给能源和电力系统结构带来根本性变化。HESSs和电池储能系统(battery energy storage systems, BESSs)相结合进行协调优化可以解决多种能源供需之间的不平衡,并提高能源效率。为确保BESSs和HESSs规划的有效性,以最小全生命周期成本(life cycle cost, LCC)、系统网损、联络线交换功率偏差、负荷波动以及电压波动为目标,采用带精英策略的非支配排序遗传算法(non-dominated sorting genetic algorithm-Ⅱ, NSGA2)求解储能系统(energy storage systems, ESSs)选址定容规划方案的Pareto非支配解集。并利用基于熵权法(entropy weight method, EWM)的灰靶决策在Pareto非支配解集中选取最佳折中解。另外,通过模糊核C-均值(fuzzy kernel C-means, FKCM)聚类算法获取源荷典型运行场景集,并基于扩展的IEEE-33节点系统进行仿真分析。仿真结果表明:NSGA2算法不仅实现了电-氢混合储能系统LCC最小,且其电压质量、功率稳定性、网损与负荷波动也显著优于对比算法。 展开更多
关键词 “零碳”园区 电池储能系统(BESSs) 氢气储能系统(hesss) 模糊核C-均值 带精英策略的非支配排序遗传算法(NSGA2)
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