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Suppression of grid fault-induced vibration in wind turbines using UPQC

机译:使用UPQC抑制风力涡轮机的电网故障诱导的振动

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In this paper an innovative approach based on the use of Flexible AC Transmission Systems (FACTS) devices is investigated to explore the possibility of suppressing mechanical vibrations in wind turbines subjected to grid faults. The numerical analysis performed highlights the capability of FACTS devices to counteract the mechanical and structural vibrations in wind turbines due to the occurrence of electrical faults. In particular, we study the application of Unified Power Quality Conditioner (UPQC) as an effective means of suppressing the vibrations. In order to study the effectiveness of UPQC, first of all a detailed model describing the dynamic interaction between the mechanical and the electrical subsystems of a wind turbine is formulated and presented in this paper. The key feature of the developed model is that it can capture the impact of grid faults on the mechanical vibrations of drive train, flexible rotor blades and tower. Subsequently, the use of FACTS devices in general, with particular emphasis on UPQC in mitigating these vibrations has been investigated. Results show that FACTS devices are successful in mitigating vibrations due to electrical faults and they can be conveniently applied to stabilize the generator shaft speed, drive train oscillations, edgewise blade vibrations and tower responses. Further, superior performances of the UPQC as compared to STATCOM are also observed under conditions with increased fault duration.
机译:本文研究了一种基于使用灵活的AC传输系统(事实)器件的创新方法,探讨了抑制经受电网故障的风力涡轮机中的机械振动的可能性。执行的数值分析突出了事实器件的能力抵消了由于电气故障的发生而抵消风力涡轮机中的机械和结构振动。特别是,我们研究统一的电能质量调理剂(UPQC)作为抑制振动的有效手段。为了研究UPQC的有效性,首先描述了在本文中配制并呈现了一种描述了风力涡轮机的机械和电气子系之间的动态相互作用的详细模型。开发模型的关键特征是它可以捕获电网故障对传动系,柔性转子叶片和塔架的机械振动的影响。随后,研究了一般来说的事实装置,特别强调在减轻这些振动时的UPQC。结果表明,由于电气故障,事实器件在减轻振动方面取得了成功,它们可以方便地应用于稳定发电机轴速度,驱动火车振动,沿刃叶振动和塔响应。此外,在发生故障持续时间的条件下,还观察到与Statcom相比的UPQC的优异性能。

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