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Wind turbine model validation with measurements

机译:带测量的风力涡轮机模型验证

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The objective of this work is to validate wind turbine models available in commercial simulation tools with measurements. Results are shown for two turbines located in two different wind farms; wind turbine 1 is a fixed speed turbine with induction generator, and wind turbine 2 is a variable speed turbine with converter-interfaced synchronous generator. Simulated active and reactive power transient responses to voltage dips have been compared to measured responses, as suggested by IEA Wind Annex 21. For the fixed speed turbine quite good agreement between measurement and simulation is obtained. Shaft parameters are seen to have significant influence on the simulated active power response. For the variable speed turbine the active and reactive power responses are to a high degree determined by the power electronics interface and corresponding controllers, and particularly the control strategy applied during voltage dips. Wind turbine manufacturers are generally very restrictive on giving out this type of information, and thus typical configurations and parameters have been used in this work. The agreement between measurement and simulation can to some degree be improved by changing the inverter controller parameters by trial-and error, but detailed knowledge on the control of the converter would be required in order to achieve a very good agreement.
机译:这项工作的目的是通过测量验证商业仿真工具中提供的风力涡轮机型号。结果显示为位于两个不同风电场的两个涡轮机;风力涡轮机1是具有感应发生器的固定速度涡轮机,风力涡轮机2是具有转换器接口同步发电机的可变速度涡轮机。与IEA风附件21所示,将模拟的主动和无功瞬态响应与电压倾斜进行比较。对于固定速度涡轮机,获得测量和模拟之间的相当良好的一致性。轴参数被视为对模拟有源功率响应产生重大影响。对于变速涡轮机,主动和无功响应是由电力电子接口和相应控制器确定的高度,特别是在电压倾斜期间施加的控制策略。风力涡轮机制造商通常在提供这种类型的信息方面是非常严格的,因此在这项工作中使用了典型的配置和参数。测量和模拟之间的协议可以通过试验和错误改变逆变器控制器参数来改善一定程度,但是需要对转换器的控制的详细了解,以实现非常好的协议。

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