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Advanced Controls for Wind Power Plant Ancillary Services

机译:风电厂辅助服务的先进控制

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This paper develops advanced controls to improve wind turbines ancillary services. Different controls are proposed to enhance the reactive power capabilities of a permanent magnet synchronous generator (PMSG). Recently, due to their substantial energy integration into power systems, wind power plants have to comply with Grid Code Requirements (GCR) set by power system operators. Voltage Ride Through (VRT) is one of the most important GCR of the Tunisian Power System Operator "STEG" (SocieteTunisi-enned'Electricite et de Gaz). The developed controls enable wind turbines reactive power production or absorption based on two hierarchical control signals emanating from the dispatching, or from voltage regulation controller at the Point of connection (Poc). The ramp up and down rates in reactive power absorption or supply must comply with the GCR. A recent control concept named synchronverter is used to control the reactive for compliance with the Tunisian GCR. With both Voltage Oriented (VOC) and synchronverter controls, the desired wind plant reactive capabilities are achieved with or without sufficient wind velocity. Thus, wind turbines are able to operate as static synchronous condensers (STATCOMs) under the so called "WindFree-Reactive Power" Control.
机译:本文开发了先进的控制,以改善风力涡轮机辅助服务。提出了不同的对照来增强永磁同步发电机(PMSG)的无功功率能力。最近,由于它们对电力系统的大量能量集成,风电站必须符合电力系统运营商设置的网格代码要求(GCR)。电压乘坐(VRT)是突尼斯电力系统运营商“Steg”(Societetunisi-Enned'Electicite et de Gaz)的最重要的GCR之一。开发的控制能够基于从调度的两种分层控制信号,或从连接点(POC)发出的两个分层控制信号的风力涡轮机无功或吸收。无功功率吸收或供应中的升降速率必须符合GCR。最近命名的SynchronVerter的控制概念用于控制遵守突尼斯GCR的反应。通过导向(VOC)和同步​​控制器,所需的风植物反应能力是通过或没有充分的风速实现的。因此,风力涡轮机能够在所谓的“风险非无功功率”控制下作为静态同步冷凝器(Statcoms)操作。

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