▍1. 2VSC-HVDC
说明: 基于vsc的高压直流输电线路模型,适用于研究电力系统专业学习应用,进行故障分析,其中整流侧使用定功率加定电流,逆变侧使用定电压控制。(HVDC transmission line model based on VSC)
说明: 基于vsc的高压直流输电线路模型,适用于研究电力系统专业学习应用,进行故障分析,其中整流侧使用定功率加定电流,逆变侧使用定电压控制。(HVDC transmission line model based on VSC)
最新Cigre 500kV双极标准测试模型(Latest Cigre 500kV Bipolar Standard Test Model)
说明: 最新Cigre 500kV双极标准测试模型(Latest Cigre 500kV Bipolar Standard Test Model)
Control of flexible power eletronic os transmissions systems AC-SSSC
EAF PS CAD MODEL, IT DEVELOPES AND ANALYSIS OF HARMONIC BEHAVIOUR IN PSCAD
说明: EAF PS CAD MODEL, IT DEVELOPES AND ANALYSIS OF HARMONIC BEHAVIOUR IN PSCAD
两端柔性直流输电模型,控制良好,适用于初学者(vsc-hvdc model and d-q control)
说明: 两端柔性直流输电模型,控制良好,适用于初学者(vsc-hvdc model and d-q control)
柔性直流输电技术是比传统直流输电更先进的直流输电技术。所以除了拥有传统高压直流输电技术即可以控制有功功率又可以控制无功功率、输电距离基本不受限制、直流输电比交流输电更稳定、实现异步系统互联和减轻环境影响的优点,柔性直流输电还具备许多自身特有的优点。(Flexible HVDC transmission technology is more advanced than traditional HVDC transmission technology. Therefore, in addition to the advantages of traditional HVDC technology, such as active power control and reactive power control, almost unlimited transmission distance, more stable HVDC than ac transmission, asynchronous system interconnection and environmental impact reduction, flexible HVDC also has many unique advantages.)
说明: 柔性直流输电技术是比传统直流输电更先进的直流输电技术。所以除了拥有传统高压直流输电技术即可以控制有功功率又可以控制无功功率、输电距离基本不受限制、直流输电比交流输电更稳定、实现异步系统互联和减轻环境影响的优点,柔性直流输电还具备许多自身特有的优点。(Flexible HVDC transmission technology is more advanced than traditional HVDC transmission technology. Therefore, in addition to the advantages of traditional HVDC technology, such as active power control and reactive power control, almost unlimited transmission distance, more stable HVDC than ac transmission, asynchronous system interconnection and environmental impact reduction, flexible HVDC also has many unique advantages.)
说明: 学者良心搭建的基于PSCAD的DFIG风机模型,并且附带有针对该模型的讲解,(The DFIG fan model based on PSCAD built conscientiously by foreign scholars and accompanied by the explanation for the model is stable and runnable.)
逆变v/f控制,输出电压稳定,pscad仿真(Inverter v/f control, stable output voltage, PSCAD simulation)
说明: 逆变v/f控制,输出电压稳定,pscad仿真(Inverter v/f control, stable output voltage, PSCAD simulation)
IEEE34节点系统建模说明 目录:1. Introduction 2. System Modeling 3. Power Flow Validation 4. Wind Generator Modeling 5. Slip and Power Flow Results 6. Short-Circuit Analysis 7. Conclusions(Distribution System Analysis:Panel Session -Induction Machine Modeling)
说明: IEEE34节点系统建模说明 目录:1. Introduction 2. System Modeling 3. Power Flow Validation 4. Wind Generator Modeling 5. Slip and Power Flow Results 6. Short-Circuit Analysis 7. Conclusions(Distribution System Analysis:Panel Session -Induction Machine Modeling)
说明: PSCAD仿真模型,可参考各种例子,有各种高压直流输电模型,有整流器的模型等等,供参考(PSCAD simulation model can refer to various examples, including various HVDC transmission models, rectifier models and so on, for reference.)
基于pscad平台搭建的风机模型,可以用于次同步振荡或者是电力系统稳定性的研究(Wind turbine model based on PSCAD platform can be used to study subsynchronous oscillation or power system stability)
说明: 基于pscad平台搭建的风机模型,可以用于次同步振荡或者是电力系统稳定性的研究(Wind turbine model based on PSCAD platform can be used to study subsynchronous oscillation or power system stability)