首页> 外文OA文献 >Performance Improvement of Doubly Fed Induction Generator-based Wind Energy Conversion System during Various Internal Converter Faults
【2h】

Performance Improvement of Doubly Fed Induction Generator-based Wind Energy Conversion System during Various Internal Converter Faults

机译:各种内部换流器故障期间基于双馈感应发电机的风能转换系统的性能改进

摘要

The doubly fed induction generator (DFIG)-based wind energy conversion system (WECS) currently dominates the wind energy market due to its advantages over other WECSs. In it, the rotor is interfaced with the AC network through a rotor side voltage source converter (RSC) and a grid side voltage source converter (GSC) which are coupled with a DC-link capacitor that helps to maintain the voltage at the point of common coupling within permissible limits. A DFIG's sensitivity to external faults has motivated researchers to investigate the impacts of various grid disturbances, such as voltage sag, voltage swell and short-circuit faults, on the grid side of its low-voltage ride-through (LVRT) capability. However, no attention has been paid to examining the impacts of RSC and GSC internal faults on the LVRT capability of a DFIG-based WECS.This thesis investigates a new DFIG problem that may frequently occur and proposes a solution to it. In this study, the impacts of various intermittent and sustained internal GSC and RSC faults on the overall performance of a DFIG-based WECS are compared. These faults include a fire-through, misfire, flashover and short circuit across the DC-link capacitor that can be caused by various malfunctions in the control and firing equipment of the converter station. In this context, the effects of the previously mentioned faults on various variables of the DFIG-based WECS are investigated using PSCAD/EMTDC software package. Compliance of the DFIG performance under such faults with the recent LVRT grid codes of the USA, Spain, Mexico, Denmark, Ireland, Germany, Quebec and the UK are also investigated. Two proposed solutions to these problems are introduced; a conventional STATCOM; and a STATCOM with the application of a high temperature superconducting (HTS) coil. The key objectives of the proposed solutions are to improve the LVRT capability of the DFIG and maintain its unity power factor operation during various voltage source converter (VSC) faults. To introduce a general and robust controller that helps to enhance the system’s performance under various faults, the controller parameters are tuned using the Nelder and Mead optimisation technique.This study determines that the effect of internal VSC faults should be considered in the design of a DFIG control system and reactive power compensation must be available to enable the wind turbine to comply with the stringent LVRT specifications enforced by international grid codes. Moreover, a reliable technique for monitoring conditions is necessary to detect these faults in advance in order to prevent their severe consequences.
机译:由于基于双馈感应发电机(DFIG)的风能转换系统(WECS)相对于其他WECS的优势,目前在风能市场上占据主导地位。其中,转子通过转子侧电压源转换器(RSC)和电网侧电压源转换器(GSC)与AC网络相连,转子侧电压源转换器(RSC)和电网侧电压源转换器(GSC)与直流链路电容器耦合,该电容器有助于将电压保持在普通联轴器在允许的范围内。 DFIG对外部故障的敏感性促使研究人员在低压穿越(LVRT)功能的电网侧研究各种电网干扰的影响,例如电压骤降,电压骤升和短路故障。但是,没有关注研究RSC和GSC内部故障对基于DFIG的WECS的LVRT能力的影响。本文研究了一个可能经常发生的DFIG新问题,并提出了解决方案。在这项研究中,比较了各种间歇性和持续性内部GSC和RSC故障对基于DFIG的WECS整体性能的影响。这些故障包括直通,失火,闪络和直流母线电容器上的短路,这可能是由于换流站的控制和点火设备中的各种故障引起的。在这种情况下,使用PSCAD / EMTDC软件包研究了上述故障对基于DFIG的WECS的各种变量的影响。还研究了在此类故障下DFIG性能是否符合美国,西班牙,墨西哥,丹麦,爱尔兰,德国,魁北克和英国的最新LVRT电网规范。介绍了针对这些问题的两种建议的解决方案。常规STATCOM; STATCOM应用高温超导(HTS)线圈。提出的解决方案的关键目标是在各种电压源转换器(VSC)故障期间提高DFIG的LVRT能力并维持其统一的功率因数操作。为了引入一种通用且鲁棒的控制器来帮助提高各种故障下的系统性能,使用Nelder和Mead优化技术对控制器参数进行了调整。本研究确定在DFIG的设计中应考虑内部VSC故障的影响控制系统和无功功率补偿必须可用,以使风力涡轮机符合国际电网法规强制执行的严格LVRT规范。此外,为了防止严重后果,必须有一种可靠的监控条件的技术来提前检测这些故障。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号