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Effective protection for doubly fed induction generator-based wind turbines under three-phase fault conditions

机译:在三相故障条件下,对倍增馈送发电机的风力涡轮机的有效保护

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摘要

This paper proposes an effective protection strategy which combines three-crowbar circuit configuration (TCCC), a small bypass resistor (SBR) for wind turbines (WTs) based on the doubly fed induction generators (DFIGs). The TCCC includes (i) resistive crowbar, (ii) inductive crowbar, and (iii) capacitive crowbar. Conventionally, applying only resistive-crowbar circuit as the only means of protection on the DFIG WT, the rotor-side power converter (RSPC) and dc-link capacitor are protected against the effects of a severe voltage dip. However, tripping the RSPC leads to loss of excitation control, and the DFIG behaves like the squirrel-cage induction generator which obtains its magnetization current from the grid which further deepen the terminal voltage. Moreover, integrating the resistive crowbar with series R-L branch keeps the RSPC connection active, but the generator excitation control is partially retained and the oscillations of the rotor currents and dc-link voltage can heavily deteriorate the performance of the generator. Thus, the TCCC-SBR circuit is proposed to compensate for the deficiency when the two conventional circuits are applied. Its performance validation is performed via extensive simulation studies using MATLAB/Simulink software. From the comparative simulation results, more improved fault ride-through capability of the DFIG is achieved with the proposed protection circuit than the conventional protection circuits.
机译:本文提出了一种有效的保护策略,基于双馈感应发生器(DFIG),将三撬杆电路配置(TCCC),用于风力涡轮机(WTS)的小旁路电阻(SBR)相结合。 TCCC包括(i)电阻撬棍,(ii)电感撬棍,(iii)电容撬棍。通常,仅应用电阻 - 撬杆电路作为DFIG WT的唯一保护装置,转子侧功率转换器(RSPC)和DC-LINK电容受到严重电压倾斜的影响。然而,绊倒RSPC导致抗激励控制的丧失,并且DFIG的行为类似于鼠笼式感应发生器,其从网格获得其磁化电流,该电流进一步加深端电压。此外,使用串联R-L分支集成电阻撬棍,保持RSPC连接有效,但是发生发电机激励控制,并且转子电流和直流电电压的振荡可以严重劣化发电机的性能。因此,提出了TCCC-SBR电路以补偿应用两个传统电路时的缺陷。它的性能验证是通过使用MATLAB / SIMULINK软件的广泛模拟研究执行的。根据比较仿真结果,通过所提出的保护电路比传统的保护电路实现了DFIG的更高的故障乘转录能力。

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