Fiber supercapacitor(FSC)is a promising power source for wearable/stretchable electronics and high capacitive performance of FSCs is highly desirable for practice flexible applications.Here,we report a composite of ma...Fiber supercapacitor(FSC)is a promising power source for wearable/stretchable electronics and high capacitive performance of FSCs is highly desirable for practice flexible applications.Here,we report a composite of manganese dioxide(Mn O_2)and activated carbon fibers(ACFs)with high MnO_2mass loading and microporous structure(abbreviated as Mn O_2@ACF),which is used as a fiber electrode to produce a FSC with a high capacitive performance and a good flexibility.The MnO_2@ACF composite electrode in FSCs delivers an ultrahigh specific capacitance of 410 mF/cm^2at 0.1 mA/cm^2,corresponding to a high energy density of 36μWh/cm^2and high power density of 726μW/cm^2.Such high capacitive performance and simple fabrication method indicates that the Mn O_2@ACF composite is a very promising electrode material for flexible fiber supercapacitors.展开更多
随着新型电力系统建设和“双碳目标”的发展,分布式新能源和灵活性负荷在配电网中的渗透率越来越高,主动配电网的低碳经济调度面临巨大挑战。考虑系统碳排放的同时考虑车辆到电站(vehicle-to-grid,V2G)的储能特性,建立了电动汽车有序充...随着新型电力系统建设和“双碳目标”的发展,分布式新能源和灵活性负荷在配电网中的渗透率越来越高,主动配电网的低碳经济调度面临巨大挑战。考虑系统碳排放的同时考虑车辆到电站(vehicle-to-grid,V2G)的储能特性,建立了电动汽车有序充放电模型。基于可转移负荷和可中断负荷进行负荷需求响应建模,并对配电网支路潮流约束进行二阶锥松弛处理,以主动配电网调度成本最小为目标构建了一种考虑V2G储能特性与负荷需求响应的主动配电网日前低碳经济调度模型;计及风光出力不确定性得到主动配电网低碳鲁棒调度模型并采用行列生成算法(column and constraint generation,CCG)算法进行求解,以保证最坏场景的碳排放在允许范围以内。采用IEEE 33节点配电系统算例进行了验证,结果表明,所提模型能够有效降低主动配电网的调度成本和碳排放量。展开更多
基金supported by the National Natural Science Foundation of China (No. 51702229, and No. 51525204)the National Key Basic Research Program of China (2014CB932400)
文摘Fiber supercapacitor(FSC)is a promising power source for wearable/stretchable electronics and high capacitive performance of FSCs is highly desirable for practice flexible applications.Here,we report a composite of manganese dioxide(Mn O_2)and activated carbon fibers(ACFs)with high MnO_2mass loading and microporous structure(abbreviated as Mn O_2@ACF),which is used as a fiber electrode to produce a FSC with a high capacitive performance and a good flexibility.The MnO_2@ACF composite electrode in FSCs delivers an ultrahigh specific capacitance of 410 mF/cm^2at 0.1 mA/cm^2,corresponding to a high energy density of 36μWh/cm^2and high power density of 726μW/cm^2.Such high capacitive performance and simple fabrication method indicates that the Mn O_2@ACF composite is a very promising electrode material for flexible fiber supercapacitors.
文摘随着新型电力系统建设和“双碳目标”的发展,分布式新能源和灵活性负荷在配电网中的渗透率越来越高,主动配电网的低碳经济调度面临巨大挑战。考虑系统碳排放的同时考虑车辆到电站(vehicle-to-grid,V2G)的储能特性,建立了电动汽车有序充放电模型。基于可转移负荷和可中断负荷进行负荷需求响应建模,并对配电网支路潮流约束进行二阶锥松弛处理,以主动配电网调度成本最小为目标构建了一种考虑V2G储能特性与负荷需求响应的主动配电网日前低碳经济调度模型;计及风光出力不确定性得到主动配电网低碳鲁棒调度模型并采用行列生成算法(column and constraint generation,CCG)算法进行求解,以保证最坏场景的碳排放在允许范围以内。采用IEEE 33节点配电系统算例进行了验证,结果表明,所提模型能够有效降低主动配电网的调度成本和碳排放量。