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Modeling and simulation of windgenerator with fixed speed wind turbine under Matlab-Simulink

机译:Matlab-Simulink下固定速度风力涡轮机的风体磨机的建模与仿真

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The rapidly growing wind industry is highly expressing the need for education and training worldwide, particularly on the system level. Modelling and simulating windgenerator system using Matlab-Simulink provides expert help in understanding wind systems engineering and system design. Working under Matlab-Simulink we present the integration of the developed WECS model with public electrical grid. A test of the calculated power and Cp related to the experimental equivalent data, using statistical analysis is performed. The statistical indicators of accuracy show better results of the presented method with RMSE: 21%, 22%, MBE : 0.77%, 0.12 % and MAE :3%, 4%.On the other hand we study its behaviour when integrated in whole power system . Three level of wind speeds have been chosen : low with 5m/s as the mean value, medium with 8m/s as the mean value and high speed with 12m/s as the mean value. These allowed predicting and supervising the active power produced by the system, characterized respectively by the middle powers of-150 kW,-250kW and-480 kW which will be injected directly into the public electrical grid and the reactive power, characterized respectively by the middle powers of 60 kW, 180 kW and 320 kW and will be consumed by the windgenerator.
机译:迅速增长的风力行业高度表达了全球教育和培训的需求,特别是在系统层面。使用MATLAB-SIMULINK的建模和模拟风能系统提供专家帮助了解风系统工程和系统设计。在Matlab-Simulink下工作我们介绍了开发的WECS模型与公共电网的集成。进行使用统计分析的计算能力和CP与实验等效数据相关的CP。准确度的统计指标显示出呈现的方法的效果率为RMSE:21%,22%,MBE:0.77%,0.12%和Mae:3%,4%。另一方面,我们在整合整个权力时研究其行为系统 。选择了三级风速:用5m / s为平均值,介质为8m / s,为平均值,高速,12m / s为平均值。这些允许预测和监督系统产生的有源功率,分别由-150 kW,-250kw和-480 kW的中间功率分别用于直接注入公共电网和无功功率,分别由中间特征60 kW,180 kW和320 kW的力量,风风机将消耗。

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