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Combining droop curve concepts with control systems for wind turbine active power control

机译:将下垂曲线概念与控制系统相结合,用于风力发电机的有功功率控制

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Wind energy is becoming a larger portion of the global energy portfolio, and wind penetration has increased dramatically in certain regions of the world. This increasing wind penetration has driven the need for wind turbines to provide active power control (APC) services to the local utility grid, as wind turbines do not intrinsically provide frequency regulation services that are common with traditional generators. Large scale wind turbines are typically decoupled from the utility grid via power electronics, which allows the turbines to synthesize APC commands via control of the generator torque and blade pitch commands. Consequently, the APC services provided by a wind turbine can be more flexible than those provided by conventional generators. This paper focuses on the development and implementation of both static and dynamic droop curves to measure grid frequency and output delta power reference signals to a novel power set point tracking control system. The combined droop curve and power tracking controller is simulated and comparisons are made between simulations using various droop curve parameters and stochastic wind conditions. The tradeoffs involved with aggressive response to frequency events are analyzed. At the turbine level, simulations are performed to analyze induced structural loads. At the grid level, simulations test a wind plant's response to a dip in grid frequency.
机译:风能正在成为全球能源组合中更大的一部分,并且在世界某些地区,风的渗透率急剧增加。随着风速的不断增加,对风力涡轮机提供了向本地公用电网提供有功功率控制(APC)服务的需求,因为风力涡轮机本身并不提供传统发电机常见的频率调节服务。大型风力涡轮机通常通过电力电子设备与公用电网分离,这允许涡轮机通过控制发电机转矩和叶片桨距命令来合成APC命令。因此,由风力涡轮机提供的APC服务可以比传统发电机提供的服务更加灵活。本文着重于静态和动态下垂曲线的开发和实现,以测量电网频率并将输出的增量功率参考信号输出到新型功率设定点跟踪控制系统。模拟了组合的下垂曲线和功率跟踪控制器,并使用各种下垂曲线参数和随机风况在模拟之间进行了比较。分析了对频率事件的积极响应所涉及的权衡。在涡轮机级别,执行模拟以分析引起的结构载荷。在电网级别,模拟测试了风电厂对电网频率下降的响应。

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