荷电

  • 网络SOC;HOPOWER;charge
荷电荷电
  1. 研究了MH-Ni电池以不同荷电态储存时容量的衰减程度;

    The different degrees of the capacity fading of Ni-MH battery with storage at different SOC were studied .

  2. 基于遗传神经网的自适应电池荷电态预估模型

    Adaptive genetic algorithm based on artificial neural network model for estimation of SOC of battery

  3. 基于鲁棒H∞滤波的蓄电池荷电状态估计

    Estimation of State of Charge for Storage Battery Based on Robust H_ ∞ Filter

  4. 不同荷电状态下α-Ni(OH)2的质子扩散系数

    Proton diffusion coefficients of α - Ni ( OH ) _2 with various charge

  5. 用金沉积量校准曲线法校准XPS结合能测定中的荷电位移

    Gold-decorating amount correction curve used for charging shift calibration in XPS

  6. 以微球型硅胶为载体的氧化物催化剂AES分析中的荷电效应

    Charging effect in AES analysis of oxide catalysts supported on silicagel tiny-ball

  7. 电池荷电状态(StateOfCharge,以下简称SOC)的快速、精确估算对电池的研究开发及市场化有重要作用。

    The accurate estimation of SOC ( State of Charge ) plays an important role in research , development and marketing of battery .

  8. 电池的剩余电量(也称荷电状态,StateOfCharge,SOC)预测是电池管理系统中最基础、最重要的部分。

    In the battery management system , the state of charge ( SOC ) forecast is the most basic and most important part .

  9. 硅纳米晶粒基MOSFET存储器的荷电特征研究

    Charging Characteristics of MOSFET Memory Based on Si Nanocrystals

  10. TiO2改性Al2O3微滤膜荷电性及其对膜水通量的影响

    Surface electric charge of al_2o_3 microfiltration membrane modified by tio_2 and its influence on water flux of membrane

  11. 并首次将PIV技术应用于荷电喷雾的实验研究。

    The electrostatic spraying characteristics of fuel are experimentally investigated firstly by PIV .

  12. 荷电型聚芳醚酮气体分离膜的研究&磺化度与中和离子对H2/N2气体透过行为的影响

    Study on charged poly ( aryl ether ketone ) gas membrane & Effects of sulfonation and neutralized ion on permeating behavior of gases of H_2 / N_2

  13. BCN薄膜XPS结构分析时荷电效应的校正

    Correction of Charging Effect on Structure Analyse of BCN Films by XPS

  14. MX线性链上荷电扭折孤子陷获的电子束缚态

    Bound electronic states trapped by charged kink soliton in linear MX chain

  15. MgO、In2O3和ZnO的添加,提高了密封Cd/Ni蓄电池的荷电保持能力;

    The addition of MgO , In2O3 and ZnO improved the retention of charge of the sealed Cd / Ni batteries .

  16. 电池荷电状态(SOC)估计的准确性对于混合动力汽车至关重要。

    The state of charge ( SOC ) determination of battery for hybrid electric vehicle ( HEV ) is very important .

  17. 而在长途旅行时,混合模式则会在电池荷电状态(SOC)到较低水平时自动运行。

    During long-distance traveling , it will switch to hybrid mode when state of charge ( SOC ) reaches the low limit .

  18. 根据所选用的单体镍氢电池的特点,以及荷电状态SOC均衡方法来确定电池包参数测量点的数量。

    According to feature of individual battery and equalization method for state of charge ( SOC ), the number of measuring points is determined .

  19. 由光二极管读出的CsI(Tl)闪烁探测器对高能轻荷电粒子的能量响应

    The Energy Response of A CsI ( TI ) Scintillation Detector with Photodiode Readout to Energetic Light Charged Particles

  20. 通过电扬对微粒强吸附影响的参量B的分析讨论,可以看出微粒荷电状态的决定性作用。

    The decisive role of the charging state of particles in codeposition can be seen in the analysis of B which is a parameter of the effect of electric field on the strong adsorption of particles .

  21. 外电场作用下R-R分布的荷电颗粒的凝聚

    Coagulation of charge particles with an R-R distribution in an electric field

  22. 电动车电池管理系统的核心任务是对电池荷电状态(SOC)进行预测。

    Prediction of the state of charge ( SOC ) of MH / Ni battery is very important for battery management system of electric vehicles .

  23. 随pH值变化,颗粒表面的荷电性质从正变化为负,等电点为3.7.其分散行为遵循双电层静电稳定机制。

    With the increase of pH , the carried charge of particles was altered from positive to negative state , and IEP equaled 3.7 . The dispersibility followed the mechanism of electrostatic stabilization .

  24. 仿真分析了其速度特性、电池的荷电状态(SOC)、燃油经济性和排放性能。

    Simulation results , including the speed of the vehicle , the state of charge of the battery , fuel economy and the emission performance , etc.

  25. 毛细管电泳(capillaryelectrophoresis,CE)是指荷电粒子或离子依靠直流电场驱动力作用,在毛细管中以不同速度定向运动的行为。

    Capillary electrophoresis is refer to the charged particle or ion depends on the high voltage electric field drive , directional movement behavior at different speeds in the capillary .

  26. 通过恒电位极化法,测定了MH电极在不同荷电态(SOC)下的氢扩散系数。

    Hydrogen diffusion coefficient of metal hydride electrode at different state of charge ( SOC ) was measured by the method of potentiostatic polarization .

  27. 铅酸电池的荷电状态(SOC)的测量和估计,对电动汽车的电池管理系统极为重要。

    It was very importance for the battery management system in electric vehicles to measure and estimate the state of charge ( SOC ) of lead-acid batteries .

  28. 萃取体系二相界面荷电物质传输的电化学研究&Ⅰ.邻菲咯啉体系中Ni(Ⅱ)、Co(Ⅱ)相转移的电化学性质

    An Electrochemical Study on Transfer of Charged Species across Interface of Two Phases in Extraction Systems ⅰ . Electrochemical Characteristics of Phase-Transfer of Nickel (ⅱ) and Cobalt (ⅱ) in 1 , 10-Phenanthroline Systems

  29. 对蓄电池的充放电控制是整个系统的核心环节,而检测蓄电池荷电状态SOC是对其进行充放电控制的首要工作。

    Charge and discharge control of the battery is the core part of the system , and detect the state of charge state is a priority part of it .

  30. 利用解析延拓技巧,最后得到荷电Dirac粒子Hawking辐射的热谱公式。

    Finally , by analytic continuation , the Hawking thermal spectrum formula of Dirac particles for arbitrary Kerr-Newman black holes is obtained .