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1)  high power capacitor charging power system
大功率充电电源
2)  power supply / high power
电源/大功率
3)  high power supply
大功率电源
1.
To achieve the safe and reliable operation of high power supply in HL-2A Tokamak,an logic control and protection system based on Siemens PLC is applied.
给出了大功率电源控制系统的控制要求、功能和工作原理以及系统PLC硬件构成图和软件流程框图,总结了系统研制中一些实际问题的解决办法。
4)  large power mise-à-la-masse
大功率充电法
5)  maximal charge and discharge power
最大充放电功率
1.
The battery state of charge model,maximal charge and discharge power model and thermal model were also presented.
为了更好地模拟动力电池的动态特性,开发相应的控制策略,建立了适用于电动汽车的动力电池仿真平台,并且分别建立了动力电池剩余电量模型、最大充放电功率模型和电池热模型。
6)  charging power
充电功率
1.
As charging power of cable is about one order of magnitude higher than general overhead line,how to compensate reactive power is a new subject to us.
由于电缆的充电功率比普通架空线路高一个数量级,如何进行无功补偿是一个需要认真研究的课题。
2.
In order to calculate rationally the sharing cost of transmission line for each genertor, it is necessary to take the problem of allocation of power loss caused by charging power into correct account.
为了合理计算电源对输电线路的利用份额 ,正确计及输电线路中由充电功率所导致损耗的分摊问题 ,在电流追踪法的基础上 ,结合电力网络本身的特性 ,提出了在求取充电功率所导致网络损耗时 ,可将充电功率按无功电源进行处理 。
3.
In the light of large charging power of 330 kV network & large transmission power,combined with the requirements stipulated in code and reactive guiding rules,discussion is made from the aspects of reactive power planning of 330 kV power gird, effects of charging power upon reactive power compensation devices,reactive power disposition rules of substation near to the power plant.
针对330 kV电网充电功率较大、线路传输功率较大等特点,结合规程、无功导则等标准,从330 kV电网无功规划思路、线路充电功率对无功补偿装置配置方案的影响、距离电厂较近变电站的无功规划配置原则等方面进行了探讨,提出了330 kV电网无功规划技术原则。
补充资料:大功
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