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1)  phase terminal voltage
相端电压
2)  terminal voltage sensing
端电压相位检测
1.
A closed-loop control method for constantmargin-angle with terminal voltage sensing is presented, then low speed range operation isdiscussed.
提出了基于端电压相位检测的恒换流剩余角控制方法,讨论了端电压相位检测的低速运行问题。
3)  terminal voltage
机端电压
1.
Iterative learning compensation design for terminal voltage of power systems excitation controller
电力系统励磁控制机端电压的迭代学习补偿
4)  terminal voltage
末端电压
5)  anode-cathode voltage
端部电压
1.
In order to analyze the influence of stray inductances on anode-cathode voltage of IGCT(Integrated Gate Commucated Thyristor) in the inverter,a single 2T-3R simulation model of IGCT is established and the influence of stray inductances on anode-cathode voltage of IGCT is simulated using PSpice(Personal Simulation program with IC emphasis).
为了分析逆变器中杂散电感对集成门极换相晶闸管(IntegratedGateCommucatedThyristor,简称IGCT)端部电压的影响,利用PSpice软件包建立了IGCT的2T-3R子电路模型,得出了考虑逆变电路中杂散电感影响的IGCT端部电压仿真波形。
6)  terminal voltage
端电压
1.
It is known that some cells present uneven terminal voltage during floating charge of VRLA batteries.
针对VRLA(阀控铅酸蓄电池)在浮充电过程中,单体电池的端电压会出现不平衡的问题,分析了其产生的原因。
2.
As a direct search optimization method, variable-shifting method that is of the advantages in stability and feasibility is utilized to calculate the magnetizing reactance and stator frequency, thus determining the terminal voltages .
利用变量轮换直接优化方法计算励磁电抗和定子频率,进而计算出不同负载下的端电压值。
3.
Based on the linear matrix inequality (LMI) approach, this paper presents the excitation H∞ controller design of the SMIB (single -machine infinite-bus system), which result in stability of power system oscillations and simultaneous control of terminal voltage of the generator oscillations when used the ?Vt and ?Pe as the feed-back.
基于LMI方法设计了单机无穷大系统的鲁棒H∞励磁控制器,由于采用?Vt和?Pe作为输出反馈的反馈输入变量,设计的控制器在提高系统稳定性的同时,使发电机端电压在遭受扰动后的变化特性也得到了明显改善。
补充资料:标准操作冲击电压波形(见冲击电压发生器)


标准操作冲击电压波形(见冲击电压发生器)
standard switching impulse voltage waveform

  b .oozhun CooZuo ChongJld,onyo boxlng标准操作冲击电压波形(standard switchingimpulse voltage waveform)见冲击电压发生器。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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