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On the Fatigue Reduction of WTs via Coordinating Inertial Response and Pitch Angle Regulation

机译:通过协调惯性响应和俯仰角度调节疲劳减少WTS

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As one of the dominant renewable power generations, wind turbines (WTs) are expected to provide inertial response to contribute to power balance maintenance in modern power system. In practice, active power of variable-speed WTs can be regulated through expending inertial response signal and pitch angle control (PAC). For existing inertial control schemes, active power of WTs can be effectively smoothed when operating within the rated zone of rotor speed, while they will actually result in more considerable fatigue on the pitch servo system when rotor speed reaches the upper speed limit for high wind speed or maintaining relative low power reference inertially. To address this issue, a practical control scheme coordinating inertial response and pitch angle regulation is proposed in this paper. By differentially managing inertial response according to the rotor speed operation state and setting up threshold-limited returning rule for PAC, proposed scheme can effectively reduce pitch manipulation while sustaining desired inertial contribution. Simulation results show that this control scheme is highly effective and is easy to implement for application.
机译:作为主导可再生动力之一,预计风力涡轮机(WTS)将提供惯性响应,以有助于在现代电力系统中的功率平衡维护。在实践中,可以通过消耗惯性响应信号和俯仰角控制(PAC)来调节变速WTS的有功功率。对于现有的惯性控制方案,当在转子速度的额定区域内操作时,可以有效地平滑WTS的有效功率,而当转子速度达到高风速的上限速度限制时,它们实际上将实际上导致音高伺服系统上的更大疲劳或惯性地保持相对低功率参考。为了解决这个问题,本文提出了一种协调惯性响应和俯仰角调节的实际控制方案。通过根据转子速度操作状态和设置阈值限制返回规则的差异管理惯性响应,所提出的方案可以有效地减少俯仰操作,同时维持所需的惯性贡献。仿真结果表明,该控制方案非常有效,易于应用于应用。

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