基于scig的风电转换系统故障穿越控制策略评估

Manaullah, Arvind Sharma
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引用次数: 2

摘要

随着风能对电网的渗透程度越来越高,研究人员开始更多地关注风能转换系统(WECS)与系统级其他组件的控制和协调,特别是在故障期间。当电力系统电压通常低于标称电压的90%时,实施合适的故障穿越控制策略以避免发电机跳闸是很重要的。低于90%可能会导致严重的发电损失和频率崩溃,随后是停电。本文实现并评估了采用全额定功率电子变流器的鼠笼式感应发电机风能转换系统处理这种情况的方法。对三种不同的控制技术——平衡正序控制、正负序控制和双电流控制进行了仿真,并应用于基于scig的WECS电网侧变换器。本文比较并介绍了这三种控制策略的性能。在研究过程中,选取了电网上最常见的不对称接地(LG)故障和最严重的不对称接地(LLL)故障作为分析对象。
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Assessment of control strategies for fault ride through of SCIG-based wind energy conversion systems
ABSTRACT With increasing penetration of wind energy into the power grid, researchers have started focusing more on control and coordination of wind energy conversion systems (WECS) with the other components at system level, especially during fault. It is important to implement a suitable fault ride through control strategy to avoid tripping of the generators when the power system is subjected to voltage dips normally below 90% of nominal voltage. The dips below 90% may lead to a significant loss of generation and frequency collapse, followed by a blackout. This article implements and assesses the methodologies to deal with such situations for squirrel cage induction generator-based wind energy conversion systems employing fully rated power electronic converters. Three distinct control techniques—namely, balanced positive sequence control, positive negative sequence control, and dual current control—have been simulated and applied to grid side converter of SCIG-based WECS. The performance of all the three control strategies has been compared and presented in this work. During this study, the system is subjected to the most common unsymmetrical line to ground (LG) fault and most severe symmetrical LLL fault on grid for the purpose of anaysis.
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