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1)  starting current
启动电流,启始电流,起动电流
2)  starting current
启动电流
1.
The equipment applied enclosed cycle and current limited to control starting current.
该设备采用闭环限流控制适时检测跟踪并控制启动电流,设备性能稳定可靠,结构简单、维护方便、启动电流可按工艺工况随机进行无级调整;克服了电抗器、自耦变压器适应性差的缺点。
2.
Firstly, the relation between coil turns and minimal starting current is revealed, and the measures to improve the minimal starting current are presented.
先对特制线圈绕线匝数与最小启动电流间的关系进行研究,提出改善最小启动电流的方法;然后设计并实现了两种方案所对应的硬件电路,比较了两种方案的优缺点。
3.
The new approach,which checks differential protection connection using electromotor starting current,is simple and reliable,and easy to be coordinated with installation schedule.
而利用电动机启动电流检验差动保护接线的新方法,简便可靠,容易与现场安装施工进度相协调。
3)  startup current
启动电流
1.
The results of theoretical analysis and simulative experiment showed that the method mentioned in paper can accurately distinguish the startup current and the short-circuit current and was simple.
可利用启动电流和短路电流的这一特点来识别两者,以避免保护的误动。
2.
Experimental results show that the scheme can be easily applied to control a three-level pulse width modulation rectifier without power source voltage sensors,and that the startup current is reduced about 50% by the soft-start process.
实验结果表明,该方法能够实现三电平脉宽调制整流器的无网侧电压传感器控制,并能降低系统启动电流约50%。
4)  start-up current
自启动电流
1.
In modern power system,the complexity of the load induces the aggrandizement of the start-up current.
现代电力系统中,负荷构成的复杂性决定了负荷自启动电流不断增大的趋势,为了分析重合闸时的动态负荷自启动过程中产生的启动过电流对过流保护的影响,运用了综合负荷模型,定性定量地分析了动态负荷占总负荷不同比重时的启动过电流。
5)  hot start
热态启动,高电流起弧
6)  starting peak current
启动峰值电流
1.
Since asynchronous traction motor starting peak current is too large in the direct torque control (DTC) system, this paper proposes torque and flux linkage synchronous control strategy for suppression of asynchronous traction motor starting peak current.
针对直接转矩控制(Direct Torque Control,简称DTC)模式下异步牵引电动机启动峰值电流过大的问题,提出了一种抑制异步牵引电机启动峰值电流的转矩和磁链同步控制策略。
补充资料:标准冲击电流波形(见冲击电流发生器)


标准冲击电流波形(见冲击电流发生器)
standard impulse current wave form

  blaozhun ehonglld}0n4一u box]ng标准冲击电流波形(standard impulse currentwave form)见冲击电流发生器。
  
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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