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The paper presents the most efficient means to prevent the occurrence of resonance overvoltage often happening in extinction coil earth ed networks, namely,overcompensation pattern, after analyzing shift voltages in formal operation and broken wire condition.

摘 要:针对消弧线圈接地电网中普遍存在的谐振过电压问题,分析了正常运行及断线故障时各种补偿方式下位移电压的大小,得出防止产生谐振过电压的首要方案是:消弧线圈采用过补偿运行方式。

With this important concept which the reads of wattmeter was equal to the product of the effective value of the voltage across the potential coil, the effective value of the current flowing in the current coil, and the cosine of the phase-angle between the current and the voltage. It was speciled with some examples to determine the phase-angle measured between line voltage, line current in different connection.

围绕有功功率表的读数等于该功率表电压线圈所接电压的有效值、电流线圈所通过的电流的有效值以及电压与电流相位差余弦的乘积这一重要的概念,用实例说明在不同的接线情况下如何利用各电量的相量关系来确定所测的线电压、线电流之间的相位差角。

At last, the goal is that devices between the field level and the baylevel is easy to interlink,in spite of voltage being l0KV or 500KV insPitC of GlS or trolly wire being used, in spite of oPtical voltage/currenttransducer or combined voltage/current sensors being used in the field level, in spite of devices produced by ABB or GEC being used, in case that the interface scheme (including adopting which kind of network and standard) between the field level and the bay level is confirmed.

最终要达到这样一个目的,一旦过程层与间隔层的接口方案确定(包括确定使用何种网络、依据哪一个标准),那么不管系统电压是10KV还是500KV,不管是GIS还是架空线,不管过程层使用的是组合式电压/电流传感器还是光纤电压/电流互感器,不管过程层使用的是ABB的设备还是GEC的设备,过程层的设备就可以同间隔层的设备很容易地实现互连。

The results show that for unoriented ZnO nanowire thin films, the electric field intensities corresponding to the turn-on voltage and threshold voltage of field emission are 4.7 and 7.6V/μm, which are much lower than those of aligned nanowire arrays.

结果显示,非取向生长的ZnO纳米线薄膜场发射的开启电压和阈值电压所对应的场强分别为4.7和7.6V/μm,场增强因子达10^3量级,具有较阵列生长的ZnO纳米线更为优异的场发射能力。

In this experiment, the amount of violative path is been cut down 60%. Reduce the times of the iteration from 8 to 3, may accelerate timing closure. Improving the design of

论文在直流电压降及金属连线电迁移分析的基础上改进电源网络的设计、金属连线的布线,最终消除了芯片中存在的较为严重的电压降。

The objective of design optimization for the current loop is to maximize the cross-over frequency. The results show the stability is improved and the capability of suppressing the switching noise is far better than the original. The objective of design optimization for the voltage loop is to minimize the gain of the line ripple voltage.As a result the bandwidth minishes obviously and optimization design excelles in restraining the ripple.

主电路以总体积最小为优化目标,优化结果表明电路的体积减少了0.5%;电流环以开环穿越频率最大为目标,优化结果表明电流环的稳定性能得到了改善,开关噪声抑制能力明显优于优化前的;电压环以线纹波电压增益最小为目标,优化结果表明电压环的带宽明显减小,纹波抑制能力远远优于优化前的。

Wire resistive touch screen technology, the grass-roots to the voltage field in both directions through the precision resistor networks are added to the work of conductive glass surface, we can simply be understood as the voltage field in both directions of staggered working hours added to the same work surface, The outer layer of Ni-Au conductive layer is only just be used as a pure conductor, there are time-test, after touching the inner ITO contact point X-axis and Y-axis voltage value method measured touch point position.

五线电阻技术触摸屏的基层把两个方向的电压场通过精密电阻网络都加在玻璃的导电工作面上,我们可以简单的理解为两个方向的电压场分时工作加在同一工作面上,而外层镍金导电层只仅仅用来当作纯导电体,有触摸后分时检测内层ITO接触点X轴和Y轴电压值的方法测得触摸点的位置。

Wire resistive touch screen technology, the grass-roots to the voltage field in both directions through the precision resistor networks are added to the work of conductive glass surface, we can simply be understood as the voltage field in both directions of staggered working hours added to the same work surface, The outer layer of Ni-Au conductive layer is only just used as a pure conductor, there are time-test, after touching the inner ITO contact point X-axis and Y-axis voltage value method measured touch point position.

五线电阻技术触摸屏的基层把两个方向的电压场通过精密电阻网络都加在玻璃的导电工作面上,我们可以简单的理解为两个方向的电压场分时工作加在同一工作面上,而外层镍金导电层只仅仅用来当作纯导体,有触摸后分时检测内层ITO接触点X轴和Y轴电压值的方法测得触摸点的位置。

This series of instruments for low-voltage, medium voltage, high-voltage switchgear and distribution systems, central station monitoring system, generator set systems, building automation systems, energy management system, such as factories, able to measure three-phase three-wire, three-phase four-wire system current, voltage, active power, reactive power, apparent power, active power, reactive power, power factor, frequency, voltage triangular openings, the largest open-shaped voltage power parameters, at the same time with a remote, remote control function.

该系列 仪表适用于低压、中压、高压开关和配电系统、中心电站监测系统、发电机组系统、楼宇自控系统、工厂能量管理系统等,能够测三相三线,三相四线系统的电流、电压、有功功率、无功功率、视在功率、有功电能、无功电能、功率因数、频率、开口三角形电压、最大开口形电压等电力参数,同时带有遥信、遥控功能。

A capacitance interference model of three-pulse alternating current power supply on signal wire is established.

建立了矿井电器三相交流电对测控信号线的电容性干扰模型,用复数运算法计算了稳态情况下的干扰电压,分析了布线位置对干扰的影响,并将结果推广到尖峰脉冲群下的供电线路,得出的微机测控信号线布线位置与干扰电压的关系对设计测控微机提供了基础。

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