基于双馈感应发电机的风力发电机主要频率控制方法的比较

IF 1.5 Q4 ENERGY & FUELS Wind Engineering Pub Date : 2022-12-01 DOI:10.1177/0309524X221114350
Mauro Amaro Pinazo, Ronal Antara Arias, Jorge Luis Mírez Tarrillo
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引用次数: 1

摘要

大水平风能的渗透导致了影响电力系统频率稳定性的技术问题。自然,风力发电厂不提供惯性响应,也不会在发电需求不平衡的情况下调节系统频率,因为转子转速和电网频率通过电子变流器(AC/DC/AC)解耦。本文对四种基于电磁转矩设定点的控制方法和一种基于机械转矩的控制方法的性能进行了综述、分析和比较。这些方法允许在频率偏差发生时激活风力涡轮机惯性,有助于类似于传统同步发电机的系统频率调节。然而,风力涡轮机只能在有限的时间内改变其工作点,而不是永久的。
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Comparison of primary frequency control methods for wind turbines based on the doubly fed induction generator
The penetration of large levels of wind energy leads to technical problems affecting the frequency stability of the power system. Naturally, a wind power plant does not provide an inertial response nor does it regulate the system frequency in case of generation-demand imbalance due to the decoupling between the rotor speed and the grid frequency through the electronic converter (AC/DC/AC). This paper reviews, analysis and compares the performance of four control methods based on the modification of the electromagnetic torque set point and one of the mechanical torque. These methods allow that activation of the wind turbine inertia when a frequency deviation occurs, contributing to the regulation of the system frequency similarly to a conventional synchronous generator. However, wind turbines only change their operating point for a limited time and not permanently.
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来源期刊
Wind Engineering
Wind Engineering ENERGY & FUELS-
CiteScore
4.00
自引率
13.30%
发文量
81
期刊介绍: Having been in continuous publication since 1977, Wind Engineering is the oldest and most authoritative English language journal devoted entirely to the technology of wind energy. Under the direction of a distinguished editor and editorial board, Wind Engineering appears bimonthly with fully refereed contributions from active figures in the field, book notices, and summaries of the more interesting papers from other sources. Papers are published in Wind Engineering on: the aerodynamics of rotors and blades; machine subsystems and components; design; test programmes; power generation and transmission; measuring and recording techniques; installations and applications; and economic, environmental and legal aspects.
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