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Voltage Control with Wind Farms: Current Practice with Type 4 WTG in Canada

机译:风电场的电压控制:加拿大4型风力发电机组的现行做法

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摘要

Wind Farms (WFs) are growing in number and size in many markets worldwide and they are replacing more and more conventional power plants. This goes hand-in-hand with Power System Operators (PSOs) developing stricter grid connection requirements for WFs in order to ensure system stability and quality of supply. Nowadays, for instance, most WFs connected to transmission systems are required to be able to directly or indirectly control the voltage at the Point of Common Coupling (PCC). This paper explains the theoretical voltage control performance and capabilities of WFs equipped with Full-Scale Power Converter Wind Turbine Generators (WTGs). Furthermore, some examples of requirements in three different jurisdictions in Canada are shown, Alberta, Ontario and Québec. Moreover, it is described how voltage control characteristics of WFs can be studied during the planning and design stage of a project. Finally, it is explained how on-site compliance testing and validation of dynamic models provide proof that grid code requirements are met.
机译:全球许多市场上的风电场(WF)数量和规模都在增长,它们正在取代越来越多的常规发电厂。这与电力系统运营商(PSO)齐头并进,为WF制定了更严格的电网连接要求,以确保系统稳定性和供电质量。例如,如今,大多数连接到传输系统的WF都必须能够直接或间接控制公共耦合点(PCC)的电压。本文介绍了配备满量程功率转换器风力涡轮发电机(WTG)的WF的理论电压控制性能和功能。此外,还显示了加拿大三个不同司法管辖区(阿尔伯塔省,安大略省和魁北克省)的一些要求示例。此外,还描述了如何在项目的规划和设计阶段研究WF的电压控制特性。最后,说明了现场合规性测试和动态模型验证如何提供满足网格代码要求的证据。

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