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Power balancing and dc fault ride through in DC grids with dc hubs and wind farms

机译:带有直流集线器和风电场的直流电网中的功率平衡和直流故障穿越

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Power balancing algorithm and dc fault ride through strategy in a DC grid with a DC hub are proposed in this article. Inductor-capacitor-inductor (LCL) dc hub is used in the DC grid to match different voltage levels and to prevent DC fault spreading. An automatic power balancing control is developed for the hub controller, and for DC grid terminals including wind farms and passive AC loads. Collectively these controls enable power balancing for any DC fault without the need for hardware braking systems. The challenges of connecting/disconnecting of DC grid segments and a DC grid black start with non-isolated dc hubs are resolved with new controls and specific operating sequence. A 3-terminal test dc grid is developed using a 3-port LCL dc hub where one terminal is connected to a wind farm, another terminal is connected to an ac grid and a third terminal to a passive ac load. Simulations on this difficult test system are performed for a range of DC faults, power steps and a black start using PSCAD/EMTDC and results verify conclusions.
机译:本文提出了具有DC集线器的DC电网中的功率平衡算法和DC故障穿越策略。直流电网中使用了电感器-电容器-电感器(LCL)直流集线器,以匹配不同的电压电平并防止DC故障扩散。为集线器控制器以及包括风电场和无源交流负载的直流电网终端开发了自动功率平衡控制。这些控件共同实现了任何直流故障的功率平衡,而无需硬件制动系统。通过新的控件和特定的操作顺序解决了连接/断开DC网格段和以非隔离式DC集线器启动DC网格黑线的挑战。使用3端口LCL直流集线器开发了3端子测试直流电网,其中一个端子连接到风电场,另一端子连接到交流电网,第三端子连接到无源交流负载。使用PSCAD / EMTDC对这一困难的测试系统进行了一系列直流故障,功率阶跃和黑启动的仿真,结果验证了结论。

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