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svpwm50
- 50赫兹直流逆变电源MATLAB仿真 矢量控制-50 Hz DC power inverter MATLAB simulation vector control
APFC
- 基于buck 变换的电源有缘功率因数校正-APFC using matlab
distributed-generation_distribution-system_Newton-
- 优秀论文配套源码。分布式电源的接入使得配电系统从放射状无源网络变为分布有中小型电源的有源网络。带来了使单向流动的电流方向具有了不确定性等等问题,使得配电系统的控制和管理变得更加复杂。但同时,分布式电源又具有提高电网可靠性,绿色节能,等等优点,所以为更好的利用分布式电源为人类造福,我们必须对其进行研究与分析。 本文采取通过利用仿真软件Matlab编写计算潮流程序模拟分布式电源接入配电网的模型进行潮流计算的方法对分布式电源的稳态影响进行探索与分析。 选取了34节点的配电网网络模型,通过对单个
svpwm400
- 400赫兹矢量控制直流逆变电源MATLAB仿真-The 400 Hertz vector control DC power inverter MATLAB simulation
droop4
- matlab编写的droop控制模型,可以实现分布式电源功能-matlab prepared droop control model, can achieve distributed power function
T-jiexian-Guzhangceju
- 利用MATLAB编程解决的在3端电源的条件下的故障测距的实现.-.T line of catching problems
v1.0
- 电力系统网架规划及分布式电源规划matlab程序-Power system planning and distributed power grid planning matlab program
line_xingbo
- 基于Matlab/Simulink的输电线路故障行波仿真模型,模型是由3个电源和4段分布参数输电线构成的环形电网。-Based on the Matlab/Simulink of the transmission line fault traveling wave simulation model, the model is composed of 3 power supply and 4 section of the distribution parameters of the ring po
trans_innerandoutfault
- 基于Matlab/Simulink建立的变压器仿真模型,模型是一个具有双侧电源及三相双绕组变压器的简单电力系统,可以用来分别仿真变压器保护区内部故障和外部故障。-Based on MATLAB/Simulink to build the simulation model of the transformer, the model is a bilateral power and three-phase double winding transformer of power system can
feeder-reconfiguration-for-DN
- 通过MATLAB实现含分布式电源的配电网重构,可考虑多种类型负荷模式-MATLAB realization by containing distributed power distribution network reconfiguration, we can consider various types of load mode
qwe
- 无穷大功率电源供电系统 1. 理解无穷大功率电源供电系统的特点与故障特征; 2. 学会用MATLAB/Simulink进行无穷大功率电源供电系统的建模与仿真; 3. 学会Simulink仿真模型参数的设置; 4. 学会Simulink仿真结果的处理。 -Infinite power supply system 1 understand the characteristics and fault features of the infinite power supply s
three
- 单侧电源三相二次重合闸仿真模型,实现10kv配电中单侧电源结构下,三相二次重合闸的仿真(Simulation model of three phase two reclosing for one side power supply)
boost
- 利用matlab设计要求:输入电压范围3.5-4.5VDC,输出电压5VDC,最大输出功率10W,要求纹波峰峰值小于100mV,稳态误差小于50mV,最大转换效率超过95%,50%-100%输出功率范围内效率均超过90%(The range of input voltage 3.5-4.5VDC, output voltage is 5VDC, the maximum output power of 10W, peak ripple requirement is less than 100mV,
微电源matlab仿真模型
- 自己在做微电网项目中用到的微电源,用于分析加入微电源对于配电网的影响的仿真实验。The micro power supply used in the microgrid project itself is used to analyze the simulation experiment of adding the micro power supply to the distribution network.