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改进的最近电平调制策略在模块化多电平变换器中的应用
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作者 胡文华 董运 张军仁 《太原理工大学学报》 CAS 北大核心 2019年第1期36-41,共6页
为了提高模块化多电平变换器(modular multilevel converter,MMC)在子模块数量较少时使用最近电平调制(nearest level modulation,NLM)的输出电压质量,以及上下桥臂电压的平衡,提出了一种改进的最近电平调制方法。与传统最近电平调制方... 为了提高模块化多电平变换器(modular multilevel converter,MMC)在子模块数量较少时使用最近电平调制(nearest level modulation,NLM)的输出电压质量,以及上下桥臂电压的平衡,提出了一种改进的最近电平调制方法。与传统最近电平调制方法相比,改进的调制方法的优势在于能够将输出电压电平数从N+1增加到2 N+1,在不改变子模块电容平均电压的情况下,降低了输出电压的总谐波失真,并且减小了子模块电容电压的波动以及上下桥臂电压均值的差异。最后通过Matlab/Simulink仿真验证了控制策略的有效性。 展开更多
关键词 模块化多电平变换器 最近电平调制 输出电压质量 桥臂电压均衡
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Solid electrolyte interphase in water-in-salt electrolytes
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作者 Dezhong Liu Lixia Yuan Yunhui Huang 《Science China Materials》 SCIE EI CAS CSCD 2021年第7期1571-1579,共9页
The water-in-salt strategy successfully expands the electrochemical window of the aqueous electrolyte from1.23 to~3.0 V,which can lead to a breakthrough in the energy output of the aqueous battery system while maintai... The water-in-salt strategy successfully expands the electrochemical window of the aqueous electrolyte from1.23 to~3.0 V,which can lead to a breakthrough in the energy output of the aqueous battery system while maintaining the advantage of high safety.The expanded electrochemical window of the water-in-salt electrolytes can be ascribed to the decreased water activity and the solid electrolyte interphase formed on the anode.The solid electrolyte interphase in the aqueous system is not fully understood,and the basic composition,the structure,and the formation mechanism are still cloaked in mystery.This perspective summarizes the published research with emphasis on the most possible formation mechanism and composition of the interphase layer in the aqueous system.Further understanding of the interphase as well as rounded assessment of the water-in-salt electrolyte in practical operating conditions is encouraged.The full understanding of the interface will guide the design of aqueous electrolytes and help to build novel aqueous batteries with high safety and high energy density. 展开更多
关键词 solid electrolyte interphase water-in-salt electrolytes aqueous rechargeable Li-ion batteries
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