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1)  series resistance
串联内阻
1.
The functional expression for the relationship between the cell′s series resistance and the current or the voltage can be obtained consequently.
在此基础上,得到电池串联内阻与输出电流、电压之间的函数表达式,只要实测出某一确定光照强度及温度下负载的任意一组电流、电压值,计算相应的串联内阻值,进一步计算最大功率点处的电流、电压及负载值,可为最终的最大输出功率跟踪提供一种简便方法。
2.
A new method for determining the series resistance was presented and examined;.
在已知的四种电阻函数形式中,通过理论推导并结合晶体硅太阳电池功率随着温度上升而下降的实验事实,理论证明晶体硅太阳电池串联内阻具有正温度系数半导体型电阻的数学表述形式。
3.
At the same time the series resistance of cell arrays increases and working temperature of cell arrays rises which are brought about by high concentrated light intensity.
研究结果表明,聚光光强下砷化镓电池阵列输出性能优于晶硅电池阵列,高光强会导致光伏电池禁带宽度变窄,短路电流成倍增加,增加输出功率,但同时耗尽层复合率变大,开路电压降低,制约阵列的输出功率;高光强还引起电池温度升高,电池阵列串联内阻增加。
2)  equivalent series resistance
等效串联内阻
1.
When used as power system,high equivalent series resistance (ESR),which is one of the hard nuts,need to be figured out.
当用作大功率电源时,必须降低其等效串联内阻(ESR)。
2.
ESR(equivalent series resistance) is one of the main electrical parameters of a supercapacitor and a nec- essary factor must be considered in supercapacitor re- search.
等效串联内阻(ESR)是超级电容器的主要电气参数之一,是影响超级电容性能的一个重要因素,准确测量 ESR 对研究超级电容器的特性和应用具有重要意义。
3)  equal series resistance
等效串联内阻
1.
Results show that the most important factors influencing the equal series resistance(ESR) of the double layer capacitors are choice of electrolyte, fabrication of the polarize electrode, contact resistance between the polarizing electrode and the collector electrode, encapsulation technique and so on.
为降低双层电容器等效内阻,扩大其输出电流,分析了双电层电容器内阻的形成机理,得出其等效串联内阻的主要影响因素为高电导率电解液的选取、极化电极的制备、极化电极和集电极的接触电阻以及封装工艺等。
2.
Previous papers reported the development of researches on double layer capacitor with high power and low equal series resistance,analyzed different equiva.
通过介绍国内外研究的双电层电容器的不同等效电路图,分析其等效串联内阻的形成原理,得出该内阻的主要影响因素为电解液的选取、极化电极的制备、极化电极和集电极的接触电阻以及封装工艺并总结了国内外研究的有效降低该内阻的措施与方法。
4)  series resistance
串联电阻
1.
The equivalent series resistance of silicon solar cell can influence its straight volt-ampere property and short-circuit current, but have no influence on open-circuit voltage.
硅太阳能电池等效串联电阻会影响其正向伏安特性和短路电流,而对开路电压没有影响,另外串联电阻的增大会使太阳能电池的填充因子和光电转换效率降低。
2.
Considering the influence of residual flux and applying controlled closing technology,transformer inrush current is reduced by combing controlled closing technology and series resistance,setting proper resistance and cut time.
该技术将选相位关合法和串联电阻法相结合,考虑了剩磁的影响,在应用选相位关合法的基础上,通过设置适当的电阻及其切除时间来进一步降低励磁涌流。
3.
By deducting the circuit equation of solar cells under illumination,simple mathematical expressions to calculate the series resistance and the shunt conductance of solar cells were presented.
通过对太阳电池在光照时等效电路的电路方程进行推导,得到了太阳电池在光照条件下串联电阻和分流电阻的数学表达式。
5)  thermal resistance in series
串联热阻
1.
The use of thermal resistance in series methods during the calculation of thermal technique of building;
串联热阻叠加原理在建筑热工计算中的应用
6)  Resistance-contact
电阻串联
补充资料:表观内阻
分子式:
CAS号:

性质:在规定条件下,电池的电压变化值与相应的电流变化值的商。假定蓄电池以Il的电流值放电时的电压为V1,V2的电流值放电时电压为V2,如果I1与I2相差不大,可以认为电池的表观内阻r=(V2-V1)/(I2-I1)。

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