搜索资源列表
xingwang3
- 电力系统静态电压稳定性在线监控一——一种可在线应用的计及负荷静态特性的电压稳定指标-static power system voltage stability of an on-line monitoring -- An online application program and load characteristics of static electricity pressure stability index
Based.on.medium-voltage.power.line.carrier.communi
- 《基于中压电力线载波的通信技术研究》硕士学位论文,本文在研究中压电力线通信方面有很多不错的技术,推荐研究电力线通信的朋友下载研读。-"Based on medium-voltage power line carrier communications technology research" Master thesis, this medium-voltage power line communication in the study, there are many good techniques
shuizhunshujuchuli
- 高压送电线路塔基断面的自动生成的lsp程序,可自动绘制断面-High-voltage power transmission line tower base section of the automatically generated lsp program automatically draw cross-section
pee
- 高压直流输电线路电磁场的计算,指导高压直流输电线路的铺设。计算安全上线-HVDC transmission line calculation of electromagnetic fields to guide the laying of high voltage direct current transmission lines. Computationally secure on-line
HVDC_PSCAD
- This the PSCAD project file for the modeling and control of high-voltage direct current (HVDC) transmission line. Control algorithms are simulated in the file. Power electronic devices are modeled in detail. This file is very useful fo
110kv
- 根据设计任务书的要求,本次设计为110kV 变电站电气一次部分初步设计,并绘 制电气主接线图及其他图纸。该变电站设有两台主变压器,站内主接线分为110kV、 35kV 和10kV 三个电压等级。各个电压等级分别采用单母线分段接线、单母线分段带 旁母接线和单母线分段接线-From the guide of engineering design assignment, we have to design primary power-system of 110kV substation
overvoltage7
- 雷击输电线路杆塔感应过电压数字仿真软件:利用仿真软件MATLAB进行算法编写、波形仿真和操作界面绘制。此仿真软件可以计算各种不同杆塔的雷电感应过电压,计算时可以灵活改变杆塔、避雷线和导线高度,可以任意改变雷电流的各种参数,可以研究雷电流波形及各参数对感应过电压的影响,为线路杆塔的绝缘设计分析和感应过电压波形及峰值公式的研究提供分析依据。-Transmission line tower lightning induced over voltage digital simulation softwa
Newton---Raphson-demand-trend
- 用牛顿-拉夫逊算法求解线路中的潮流运算,能够求解各节点电压降,线路网络损耗-Newton- Raphson algorithm for computing the trend line, each node can solve the voltage drop line network losses
voltage-and-current-data
- 支线分界开关实际运行的电压电流数据,3天-Line of demarcation switch voltage and current data of actual operation, the 3 day
untitled1
- 是一个matlab中的power system 中搭建的一个模型。可以仿真35KV电力系统线路发单项短路故障、两项短路故障、和三项短路故障的短路电流电压波形。-This is a model of building a matlab power in system. Simulation of 35kV Power line system billing short-circuit fault, two short circuit fault, and three short circuit f
chaoliujisuan
- 本程序适用于全部开式网络,包括树状网络(任意数量母线节点),且可以任意设置迭代次数 程序开始前先在linedata.txt及busdata.txt内分别输入线路信息及母线信息 线路信息输入顺序为 始节点 末节点 电阻 电抗 导纳(若为变压器则为0) 变压器空载有功损耗(为输电线则为0) 变压器空载无功损耗(输电线为0) 变比(输电线为1) 母线信息输入顺序为 节点 电压(初始未知电压为额定电压) 母线有功功率(无负荷设为0) 母线无功(无负荷设为0) 母线类型(电
dilixitongwend-jiankong
- 实现温度在线监测是保证高压开关柜及电缆安全运行的重要手段,因此安装一套在线温度监测系统是非常必要的,根据此次实际情况结合综合保护系统可以更提高电站自动化水平,真正的实现无人职守。-Temperature monitoring is to ensure the realization of an important means of safe operation of high voltage switchgear and cables, so the installation of a line
PLL
- PSCAD自己搭建的锁相环模型,输入为线电压,可以消除直流分量对其的影响。-Phase-locked loop PSCAD build their own model, the input line voltage, it can eliminate the influence of the DC component thereof.
220kv
- 该SIMULINK模型为模拟高压分相开关、分相故障、高压线路等值模型。同时仿真了发生短路时,可以模拟短路电流-The SIMULINK model to simulate high pressure phase switch, phase failure, high voltage line equivalent model. At the same time simulation of a short circuit, short-circuit current can be simulate
6maidonghdvc
- 高压直流输电线路matlab仿真,其中整流环节为6脉动,供大家学习和参考-High voltage DC transmission line matlab simulation, in which the rectification link is 6 pulse, for everyone to learn and reference.
a
- 电力系统潮流计算程序,用于PQ分解法求解线路上的电压功率等潮流 -Power flow calculation program for power voltage and other PQ decomposition method for solving the trend line
line
- analysis of single line to ground fault in PSCAD and positive negative and zero components of current and voltage
FDTD外场激励下单导体首末端感应电压计算
- 这个程序使用了时域有限差分法(FDTD),考虑外界均匀平面波激励双导体线时,用于计算导线首末端的感应电压,程序中可以通过改变参数,得到不同因素对感应电压的影响。(This program uses finite-difference time-domain (FDTD) methods to calculate the induced voltage at the head and the end of the conductor when the uniform plane wave is u
FDTD端接动态元件感应电压计算
- 给定激励下,导体线首末端端接动态元件(电容或电感)时,应用时域有限差分法来计算其末端感应电压,其中激励源可以选择。(Given the excitation, when the leading end of the conductor line is terminated with a dynamic element (capacitor or inductor), the finite-difference time domain method is used to calculate the