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Wind power plant level testing of inertial response with optimised recovery behaviour

机译:风电厂水平测试惯性恢复行为的惯性响应

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This study presents and assesses the outcomes of inertial response tests performed on a transmission system-connected wind power plant in the Canadian province of Quebec. Frequency signals representing a response to a typical loss of generation event were injected into the wind turbines' control systems to artificially trigger an active power increase. The measurement campaign aimed to fulfil two main objectives. First, to validate the performance of a wind turbine control algorithm designed to optimise the active power behaviour after inertial response activation. Second, to study the correlation between individual wind turbine and wind power plant behaviours during, and immediately after, an inertial response event. This publication offers an update on the capabilities and limitations of type 4 wind turbines for providing inertial response functionalities. Furthermore, it underlines the importance of understanding the various parameters that have an impact on the aggregate inertial response of a wind power plant in reality as well as in dynamic simulations. This publication also addresses how simulations can be used to predict the behaviour of inertial response from wind power plants. Final results suggest that current approaches for integrating and evaluating inertial response from wind power plants in system planning studies should be revisited.
机译:本研究提出并评估了在魁北克省加拿大省的传输系统连接的风力发电厂执行的惯性响应试验的结果。表示对典型生成事件丢失的响应的频率信号被注入风力涡轮机的控制系统,以人工触发有效功率增加。衡量活动旨在实现两个主要目标。首先,为了验证风力涡轮机控制算法的性能,旨在在惯性响应激活后优化有源电力行为。其次,研究各个风力涡轮机与风力发电厂行为之间的相关性,并立即进行惯性响应事件。本出版物提供了有关4型风力涡轮机的能力和限制,用于提供惯性响应功能的能力和限制。此外,它强调了了解对现实中风电厂的总惯性响应产生影响的重要性以及动态模拟。本出版物还解决了如何使用仿真来预测风力发电厂的惯性响应的行为。最终结果表明,应重新审视系统规划研究中的流发电厂整合和评估惯性反应的目前的方法。

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