[Coupling characteristics of cellular electroporation and electrodeformation based on dynamic Young's modulus: influence of membrane thickness]. [PDF]
Wei X, Zou S, Guo F, Liu L.
europepmc +1 more source
基于HHT的1000kV输电线路等电位脉冲电流幅值与能量研究
带电作业是确保特高压输电线路安全稳定运行的关键技术,进出等电位脉冲电流幅值与能量特征是带电作业中确定电磁干扰特性的基础参数。为此现场实测1000 kV进出等电位脉冲电流,首先通过波形特征值提取算法统计电流特征量,分析转移电荷与作用积分和电流幅值的关系;然后基于HHT研究电流频域能量特征,探讨频率范围及能量强度。结果表明:峰值电流主要分布在[-500,500] A;上升时间、脉冲间隔、脉宽、转移电荷及作用积分的算术平均值分别为0.020 μs、1.72 ms、0.96 μs、1.45 mC、0.127 ...
吴田 +5 more
doaj
[<i>In Vitro</i> Biosafety Evaluation of Biodegradable Fluorinated Polyurethane Micelles]. [PDF]
Wang C +6 more
europepmc +1 more source
大规模可再生能源的高效利用是实现“碳达峰”、“碳中和”目标的重要途径。为提升风储联合系统调频精度,充分利用可再生能源解决电力系统的频率调节问题,文中建立了飞轮储能系统(FESS)模型,研究了飞轮储能阵列协调控制策略。针对负荷扰动前、后频率变化不同及频率变化率不同两种特殊情形,设计了自适应变下垂系数的控制策略,修正了各飞轮储能的放电速度,同时考虑飞轮储能荷电状态(SOC)约束限制,实现了储能系统对负荷变化的快速跟踪,达到了稳定频率的预期目的。最后,采用PSCAD/EMTDC大型数字化仿真软件进行仿真测试 ...
张继红 +4 more
doaj +2 more sources
[Analysis of the constraints of inherent limitations on the capability boundaries of brain-computer interfaces and corresponding strategies]. [PDF]
Fu Y +6 more
europepmc +1 more source
[Innovation in experimental teaching practice based on miniature mass spectrometer: from mass spectrometry principles to applications]. [PDF]
Li L, Hong J, Yu XH, Gao PF, Zhai YB.
europepmc +1 more source
[Noninvasive nanosecond transcranial pulsed electric fields: deep-penetrating, high-field stimulation for suppressing hippocampal amyloid-β and improving cognitive function in an Alzheimer's disease model]. [PDF]
Chen Y, Yao C, Yan F, Xiao P, Lu X.
europepmc +1 more source
描述了一台 2 .4 5GHz单电荷态电子回旋共振 (ECR)离子源的原理、结构与应用。介绍了其微波系统与磁场结构。在微波输入功率约 6 0 0W ,引出高压 2 2kV ,引出孔径为6mm时 ,该离子源的总束流I(H1++H2 ++H3+)可达 ...
丁俊章,赵玉彬,刘占稳,赵红卫,袁平,曹云,雷海亮,张子民,张雪珍,张汶,郭晓虹,王辉,冯玉成,李锦玉,马保华,高级元,宋沛,李锡霞
core
[Clinical features and prognosis of influenza-associated encephalopathy in children]. [PDF]
Lin WW, Song XJ, Jiang L.
europepmc +1 more source
[Finite-element simulation and experimental investigation of nanosecond transcranial pulsed electric field propagation and distribution in a three-dimensional brain model]. [PDF]
Chen Y, Yao C, Yan F, Xiao P, Lu X.
europepmc +1 more source

