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Improved low-voltage-ride-through capability of fixed-speed wind turbines using decentralised control of STATCOM with energy storage system

机译:通过带能量存储系统的STATCOM的分散控制来提高定速风力发电机的低压穿越能力

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摘要

The design and implementation of a new control scheme for reactive power compensation, voltage regulation and transient stability enhancement for wind turbines equipped with fixed-speed induction generators (IGs) in large interconnected power systems is presented in this study. The low-voltage-ride-through (LVRT) capability is provided by extending the range of the operation of the controlled system to include typical post-fault conditions. A systematic procedure is proposed to design decentralised multi-variable controllers for large interconnected power systems using the linear quadratic (LQ) output-feedback control design method and the controller design procedure is formulated as an optimisation problem involving rank-constrained linear matrix inequality (LMI). In this study, it is shown that a static synchronous compensator (STATCOM) with energy storage system (ESS), controlled via robust control technique, is an effective device for improving the LVRT capability of fixed-speed wind turbines.
机译:这项研究提出了一种新的控制方案的设计和实现,该方案用于大型互联电力系统中装有定速感应发电机(IG)的风力涡轮机的无功补偿,电压调节和瞬态稳定性增强。通过扩展受控系统的操作范围以包括典型的故障后状况,可以提供低电压穿越(LVRT)功能。提出了使用线性二次(LQ)输出反馈控制设计方法设计大型互联电力系统分散多变量控制器的系统程序,并将该控制器设计程序表述为涉及秩约束线性矩阵不等式(LMI)的优化问题。 )。在这项研究中,表明通过鲁棒控制技术控制的带有能量存储系统(ESS)的静态同步补偿器(STATCOM)是提高定速风力涡轮机LVRT能力的有效装置。

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