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Wind Farm to Weak-Grid Connection using UPQC custom power device

机译:使用UPQC定制电源设备的风电场到弱电网连接

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Wind Farms (WF) employing squirrel cage induction generator (SCIG) directly connected to the grid, represent a large percentage of the wind energy conversion systems around the world. In facilities with moderated power generation, the WF are connected through medium voltage (MV) distribution headlines. A situation commonly found in such scheme is that the power generated is comparable to the transport capacity of the grid. This case is known as Wind Farm to Weak Grid Connection, and its main problem is the poor voltage regulation at the point of common coupling (PCC). Thus, the combination of weak grids, wind power fluctuation and system load changes produce disturbances in the PCC voltage, worsening the Power Quality and WF stability. This situation can be improved using control methods at generator level, or compensation techniques at PCC. In case of wind farms based on SCIG directly connected to the grid, is necessary to employ the last alternative. Custom power devices technology (CUPS) result very usefull for this kind of application. In this paper is proposed a compensation strategy based on a particular CUPS device, the Unified Power Quality Compensator (UPQC). A customized internal control scheme of the UPQC device was developed to regulate the voltage in the WF terminals, and to mitigate voltage fluctuations at grid side. The internal control strategy is based on the management of active and reactive power in the series and shunt converters of the UPQC, and the exchange of power between converters through UPQC DC-Link. This approach increase the compensation capability of the UPQC with respect to other custom strategies that use reactive power only. Simulations results show the effectiveness of the proposed compensation strategy for the enhancement of Power Quality and Wind Farm stability.
机译:使用与电网直接相连的鼠笼式感应发电机(SCIG)的风电场(WF)代表了全球风能转换系统的很大一部分。在发电量适中的设施中,WF通过中压(MV)配电标题连接。在这种方案中通常发现的情况是,所产生的功率可与电网的输送能力相比。这种情况称为“风电场到弱电网的连接”,其主要问题是在公共耦合点(PCC)处的电压调节差。因此,薄弱的电网,风电波动和系统负载变化的组合会在PCC电压中产生干扰,从而恶化电能质量和WF稳定性。使用发电机级别的控制方法或PCC的补偿技术可以改善这种情况。如果基于SCIG的风电场直接连接到电网,则必须采用最后一种替代方法。定制功率设备技术(CUPS)的结果对于这种应用非常有用。本文提出了一种基于特定CUPS设备(统一电能质量补偿器(UPQC))的补偿策略。开发了定制的UPQC设备内部控制方案,以调节WF端子中的电压,并减轻电网侧的电压波动。内部控制策略基于UPQC串联和并联转换器中有功和无功功率的管理,以及通过UPQC DC-Link在转换器之间进行功率交换。与仅使用无功功率的其他定制策略相比,这种方法提高了UPQC的补偿能力。仿真结果表明,所提出的补偿策略对于提高电能质量和风电场的稳定性是有效的。

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