鼠笼式感应发电机与预测DPC网络耦合的风能转换系统

J. Aller, Christian P. Amendaño, Modesto R. Chuñir, J. Viola, J. Restrepo
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引用次数: 2

摘要

本文采用最优空间矢量选择技术,提出了一种基于预测直接功率控制器(DPC)的自激感应发电机(SEIG)与电网耦合的风能转换系统(WECS)的建模方法。通过直接转矩控制器(Direct Torque Controller, DTC)控制电机的空间矢量磁通和电转矩,实现感应发电机的自激。另一方面,电力系统耦合与直接功率控制器(DPC),选择所需的电压空间矢量,以最小化有功和无功功率误差的参考。与采用逆变器锁相环同步方法获得的速度相比,本文提出的最优DPC方案的优点是可以快速地将有功功率和无功功率调整到参考值。
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Wind Energy Conversion System using a Squirrel Cage Induction Generator Coupled to the Network with a Predictive DPC
This paper presents the modeling of a Wind Energy Conversion System (WECS) using a self-excited induction generator (SEIG) coupled to the grid with a predictive Direct Power Controller (DPC), applying an optimal space vector selection technique. The self-excitation of the induction generator is obtained with a Direct Torque Controller (DTC) which allows controlling the machine's space vector flux and electric torque. On the other hand, the power system coupling is with a Direct Power Controller (DPC), that selects the voltage space vectors required to minimize the active and reactive power errors to the reference. The advantage of the optimum DPC scheme proposed in this work is the fast adjustment of the active and reactive powers to the references, compared with speed obtained using the inverter's PLL synchronization method.
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