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Power Quality Enhancement for a Grid Connected Wind Turbine Energy System

机译:并网风力发电机能源系统的电能质量提升

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摘要

A comprehensive control of a wind turbine system connected to an industrial plant is discussed in this paper, where an algorithm has been developed allowing a control structure that utilizes a four-leg inverter connected to the grid side to inject the available energy, as well as to work as an active power filter mitigating load current disturbances and enhancing power quality. A four-wire system is considered with three-phase and single-phase linear and nonlinear loads. During the connection of the wind turbine, the utility-side controller is designed to compensate the disturbances caused in presence of reactive, nonlinear, and/or unbalanced single- and intra-phase loads, in addition to providing active and reactive power as required. When there is no wind power available, the controller is intended to improve the power quality using the dc-link capacitor with the power converter attached to the grid. The main difference of the proposed methodology with respect to others in the literature is that the proposed control structure is based on the conservative power theory decompositions. This choice provides decoupled power and current references for the inverter control, offering very flexible, selective, and powerful functionalities. Real-time software benchmarking has been conducted in order to evaluate the performance of the proposed control algorithm for full real-time implementation. The control methodology is implemented and validated in hardware-in-the-loop based on the real time simulator “Opal-RT” and a TMSF28335 DSP microcontroller. The results corroborated our power quality enhancement control and allowed to exclude passive filters, contributing to a more compact, flexible, and reliable electronic implementation of a smart-grid based control.
机译:本文讨论了对连接到工厂的风力涡轮机系统的全面控制,其中开发了一种算法,该算法允许控制结构利用连接到电网侧的四臂逆变器注入可用能量,以及用作有源电力滤波器,可减轻负载电流干扰并提高电能质量。考虑具有三相和单相线性和非线性负载的四线系统。在风力涡轮机的连接过程中,除需要提供有功和无功功率外,公用事业侧控制器还可以补偿无功,非线性和/或不平衡的单相和内相负载的存在引起的干扰。当没有可用的风力时,控制器将使用直流母线电容器(将功率转换器连接到电网)来改善电能质量。所提出的方法相对于其他文献的主要区别在于,所提出的控制结构基于保守的幂理论分解。该选择为逆变器控制提供了去耦的电源和电流基准,从而提供了非常灵活,选择性和强大的功能。进行了实时软件基准测试,以评估所提出的控制算法的性能,以实现完全实时的执行。该控制方法是基于实时仿真器“ Opal-RT”和TMSF28335 DSP微控制器在硬件在环中实施和验证的。结果证实了我们的电能质量增强控制,并允许排除无源滤波器,从而为基于智能电网的控制的更紧凑,灵活和可靠的电子实现做出了贡献。

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