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A synchronization control technique for soft connection of doubly-fed induction generator based wind turbines to the power grid

机译:基于双馈感应发电机的风力发电机与电网软连接的同步控制技术

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Due to network events and power system emergencies, doubly-fed induction generator (DFIG) based wind turbines can suffer from low voltage ride through which may result to the disconnection of the DFIG. Before connecting to the electricity grid again, DFIG has to be synchronized to minimize the transient effects and ensure smooth connection to the power grid. In this paper, a direct voltage control based synchronization technique is proposed for DFIG based wind turbines. Additional control features are added to original direct voltage control method for implementation of the proposed synchronization strategy. A grid connection logic is designed and presented for soft connection of DFIG to the grid. The proposed technique is implemented in a DFIG based wind turbine model and tested through simulations with various practical scenarios. Voltage transients, frequency analysis, voltage phase and system stability are analyzed in details and simulation results presented. From the results, it can be revealed that the proposed synchronization technique functions effectively and efficiently. It is also shown that by using the proposed technique, the process of synchronization and grid connection do not introduce any changes into the system, which may cause protection devices to trip or mal-operation.
机译:由于网络事件和电力系统紧急情况,基于双馈感应发电机(DFIG)的风力涡轮机可能会遭受低压行驶,这可能导致DFIG断开连接。在再次连接到电网之前,必须对DFIG进行同步,以最大程度地减少瞬变影响并确保顺利连接到电网。在本文中,提出了一种基于直接电压控制的同步技术,用于基于DFIG的风力涡轮机。其他控制功能已添加到原始直流电压控制方法中,以实现所提出的同步策略。设计并提出了网格连接逻辑,用于DFIG与网格的软连接。所提出的技术在基于DFIG的风力涡轮机模型中实现,并通过在各种实际情况下的仿真进行了测试。详细分析了电压瞬变,频率分析,电压相位和系统稳定性,并给出了仿真结果。从结果可以看出,所提出的同步技术有效地起作用。还显示出,通过使用所提出的技术,同步和电网连接的过程不会在系统中引入任何变化,这可能导致保护设备跳闸或运行不正常。

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