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Optimal Efficiency Control Strategy in Wind Energy Conversion System With Induction Generator

机译:带有感应发电机的风能转换系统的最优效率控制策略

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This paper presents an optimal efficiency control strategy for wind energy conversion systems (WECSs) with squirrel cage induction generators (SCIGs). The developed control scheme provides an optimal efficiency of the induction generator and maximum power extraction from the wind turbine. Thus, maximum power harvesting from the whole WECS is achieved and additionally expansion of the exploitable wind speed region toward the lower speed range is accomplished. A minimum electric loss (MEL) controller is introduced to minimize the generator electric loss and a maximum power point tracking (MPPT) controller is used to maximize the wind turbine output power. Common input to the two optimal controllers is only the generator speed, while the measurement of the wind speed is not required. The controllers determine the optimal $d$- and $q$-axis stator current components of the SCIG through optimal conditions and, therefore, fast dynamic response of the WECS is accomplished. An experimental procedure is proposed to determine the MEL and MPPT controller parameters. Therefore, neither the knowledge of SCIG loss model, nor the characteristic curves of the wind turbine are required. The effectiveness and the operational improvements of the suggested optimal control scheme have been verified experimentally.
机译:本文提出了一种具有鼠笼式感应发电机(SCIG)的风能转换系统(WECS)的最佳效率控制策略。所开发的控制方案可提供感应发电机的最佳效率并从风力涡轮机中提取最大功率。因此,实现了从整个WECS的最大功率收集,并且另外实现了可利用的风速区域向较低速度范围的扩展。引入了最小电损耗(MEL)控制器以最小化发电机的电损耗,并使用最大功率点跟踪(MPPT)控制器来最大化风力涡轮机的输出功率。这两个最佳控制器的共同输入只是发电机速度,而无需测量风速。控制器通过最佳条件确定SCIG的最佳$ d $和$ q $轴定子电流分量,因此可以实现WECS的快速动态响应。提出了确定MEL和MPPT控制器参数的实验程序。因此,既不需要SCIG损失模型的知识,也不需要风力涡轮机的特性曲线。建议的最优控制方案的有效性和操作改进已通过实验验证。

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