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Improvement of grid frequency dynamic characteristic with novel wind turbine based on electromagnetic coupler

机译:基于电磁耦合器的新型风力机改进电网频率动态特性

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摘要

A synchronous generator is directly coupled to grid in the novel wind turbine drive train concept based on electromagnetic coupler (WT-EMC). Similarly to conventional power plants, WT-EMC has inherent (inertial) grid frequency support capability, albeit rather limited due to its configuration. Additional power should be generated in response to a grid frequency drop in order to improve the dynamic characteristic of the grid frequency. In this paper, a novel control strategy for WT-EMC to improve the dynamic characteristic of grid frequency is proposed. The principle is to detect active power imbalance in the grid and then rapidly regulate the output power of WT-EMC. Based on the calculated electromagnetic torque of the synchronous generator in WT-EMC—acquired faster than the calculated grid frequency—the synchronous generator mechanical torque is controlled to track its electromagnetic torque to stabilize the rotor speed, therefore directly improving the grid frequency. The proposed control strategy effectiveness is firstly tested through simulations and then validated on a specially built experimental platform.
机译:在基于电磁耦合器(WT-EMC)的新型风力涡轮机传动系统概念中,同步发电机直接耦合到电网。与常规发电厂类似,WT-EMC具有固有的(惯性)电网频率支持能力,尽管由于其配置而受到很大限制。应响应于电网频率下降来产生额外的功率,以改善电网频率的动态特性。提出了一种新的WT-EMC控制策略,以提高电网频率的动态特性。原理是检测电网中的有功功率不平衡,然后快速调节WT-EMC的输出功率。基于在WT-EMC中计算出的同步发电机电磁转矩(比计算的电网频率更快),控制同步发电机的机械转矩以跟踪其电磁转矩以稳定转子速度,从而直接提高电网频率。首先通过仿真测试提出的控制策略有效性,然后在专门构建的实验平台上进行验证。

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