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Verification of DFIG and PMSG wind turbines' LVRT characteristics through field testing

机译:通过现场测试验证DFIG和PMSG风力发电机的LVRT特性

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摘要

Low voltage Ride through (LVRT) capability has become more and more an issue for newly integrated wind turbines. To the best of our knowledge, this paper is the first to develop field tests for real wind turbines on Northeast China wind farms. It is therefore different from other papers that validate LVRT control strategies through running software simulations on a computer. To examine a single wind turbine's LVRT capability, wind turbine's terminal voltage dip is achieved by using a grid voltage dip emulator, which is located on the 690V side of the generator transformer. Apart from that, short circuiting a wind farm's 35kv transmission line is implemented to testify a wind farm's LVRT capability. This short circuit test is more efficient than the previous one to deal with massive wind turbines in a large area. By artificially making various grid fault circumstances, dynamic behavior of DFIG and PMSG wind turbines are analyzed and compared in both of these tests. Various control strategies such as active/passive crowbar and chopper protection schemes are verified in reality. New active/reactive power compensation methods are investigated and compared.
机译:低压穿越(LVRT)功能已成为新集成风力涡轮机的一个越来越多的问题。据我们所知,本文是第一篇针对中国东北风电场的实际风力涡轮机进行现场测试的研究。因此,它与其他通过在计算机上运行软件仿真来验证LVRT控制策略的论文不同。为了检查单个风力涡轮机的LVRT能力,可通过使用位于发电机变压器690V侧的电网电压骤降仿真器来实现风力涡轮机的终端电压骤降。除此之外,还对风电场的35kv传输线进行了短路,以证明风电场的LVRT能力。这种短路测试比以前的测试更有效,可以应对大面积的大型风力涡轮机。通过人为地制作各种电网故障情况,在两个测试中都对DFIG和PMSG风力发电机的动态行为进行了分析和比较。现实中验证了各种控制策略,例如主动/被动撬棍和斩波器保护方案。研究和比较了新的有功/无功功率补偿方法。

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