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一种基于电压静态稳定性的电力系统自复性指标 被引量:8
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作者 章熙 贺先强 +3 位作者 覃海 张通 郑杰辉 李志刚 《电测与仪表》 北大核心 2018年第21期9-13,共5页
针对电力系统的运行稳定问题,提出了一种综合的系统电压自复性指标。该方法结合了系统潮流方程的降阶雅克比矩阵最小特征值以及L指标,既能考虑到系统整体的电压裕度,又反映了节点的电压稳定性,能够在直观、全面地体现系统当前运行状态... 针对电力系统的运行稳定问题,提出了一种综合的系统电压自复性指标。该方法结合了系统潮流方程的降阶雅克比矩阵最小特征值以及L指标,既能考虑到系统整体的电压裕度,又反映了节点的电压稳定性,能够在直观、全面地体现系统当前运行状态距离崩溃点的距离的同时,对系统的状态变化进行监测。该评价方法在IEEE 30节点系统模型与某实际电网模型进行测试,仿真结果表明该指标能够在系统负荷变化时较好地体现系统运行稳定性的波动。 展开更多
关键词 电压自复性 静态电压稳定 灵敏度 L指标
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Self-healing and highly elastic fluorine-free proton exchange membranes comprised of poly(vinyl alcohol) derivative and phytic acid for durable fuel cells 被引量:2
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作者 Yixuan Li Zhengxuan Li +1 位作者 Wenjie Wang Junqi Sun 《Science China Materials》 SCIE EI CSCD 2020年第7期1235-1246,共12页
Fluorine-free proton exchange membranes(PEMs)capable of healing from physical damage are important for PEM fuel cells(PEMFCs)with extended service life and enhanced reliability.Herein,highly elastic fluorine-free PEMs... Fluorine-free proton exchange membranes(PEMs)capable of healing from physical damage are important for PEM fuel cells(PEMFCs)with extended service life and enhanced reliability.Herein,highly elastic fluorine-free PEMs with excellent self-healing ability and high proton conductivity are fabricated through complexation of phytic acid(PA)with sulfonated polyvinyl alcohol(SPVA),followed by subsequent grafting of SPVA with positively charged 4-(1H-imidazol-1-yl)benzenecarbaldehyde(IBZ).Compared with recast Nafion membranes,the as-prepared SPVA-IBZ/PA membranes exhibit an enhanced mechanical strength and elasticity and can spontaneously recover from a^50%strain to their initial states within^30 s at room temperature.Meanwhile,the SPVA-IBZ/PA membranes have a proton conductivity of^0.095 S cm-1at^70°C,which is higher than that of recast Nafion membranes.The hydrogen-powered PEMFCs using the SPVA-IBZ/PA membranes,which show an open circuit voltage of^0.98 V and maximum power density of^609 mW cm-2,exhibit a satisfactory cell performance.Importantly,the SPVA-IBZ/PA membranes can spontaneously heal mechanical damage of several tens of micrometers in size and restore their original proton conductivity and cell performance under the working conditions of PEMFCs. 展开更多
关键词 proton exchange membranes self-healing materials proton conduction fuel cells supramolecular materials
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