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Low voltage ride-through enhancement of DFIG-based wind turbine using DC link switchable resistive type fault current limiter

机译:使用直流链路可切换电阻型故障限流器增强基于DFIG的风力发电机的低压穿越能力

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摘要

Doubly-fed induction generator (DFIG)-based wind turbines utilise small-scale voltage sourced converters with a limited overcurrent withstand capability, which makes the DFIG-based wind turbines very vulnerable to grid faults. Often, modern DFIG systems employ a crowbar protection at the rotor circuit to protect the rotor side converter (RSC) during grid faults. This method converts the DFIG to a squirrel cage induction generator, which does not comply with the new grid codes. The recent grid codes need wind turbines to stay connected to the utility grid during and after power system faults, especially in high penetration level of wind power. Furthermore, the crowbar switch is expensive. This paper proposes a novel DC-link switchable resistive-type fault current limiter (SRFCL) to improve the LVRT capability of the DFIG. The proposed SRFCL is employed in the DC side of the RSC. The SRFCL solves crowbar protection activation problems and eliminates subsequent complications in the DFIG system. The proposed SRFCL does not have any significant impact on the overall performance of the DFIG during normal operation. Whenever the fault, whether symmetrical or asymmetrical, occurs, the SRFCL not only limits rotor over-currents but also prevents rotor speed acceleration and restricts high torque oscillations even during zero grid voltage, as recommended by some grid codes. To prove the effective operation of the SRFCL on the RSC fault current limitation, analytical analysis is performed in each switching interval. The proposed approach is compared with the crowbar-based protection method. Simulation studies are carried out in PSCAD/EMTDC software. In addition, a prototype is provided to demonstrate the main concept of the proposed approach.
机译:基于双馈感应发电机(DFIG)的风力涡轮机利用具有有限的过电流承受能力的小型电压源转换器,这使得基于DFIG的风力涡轮机非常容易出现电网故障。通常,现代DFIG系统在转子电路处采用撬棍保护,以在电网故障期间保护转子侧变流器(RSC)。此方法将DFIG转换为不符合新电网规范的鼠笼式感应发电机。最近的电网法规要求风力涡轮机在电力系统故障期间和之后,尤其是在风电渗透率较高的情况下,保持与公用电网的连接。此外,撬开关价格昂贵。本文提出了一种新型的直流链路可切换电阻型故障电流限制器(SRFCL),以提高DFIG的LVRT能力。提议的SRFCL用于RSC的DC端。 SRFCL解决了撬杠保护激活问题,并消除了DFIG系统中的后续麻烦。提议的SRFCL在正常运行期间对DFIG的整体性能没有任何重大影响。每当出现故障(无论对称还是不对称)时,SRFCL不仅会限制转子过电流,而且还会防止转子速度加速,甚至在零电网电压期间也能限制高转矩振荡(如某些电网法规所建议)。为了证明SRFCL在RSC故障电流限制上的有效运行,在每个开关间隔中都进行了分析。将该方法与基于撬棍的保护方法进行了比较。仿真研究在PSCAD / EMTDC软件中进行。此外,提供了一个原型来演示所提出方法的主要概念。

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