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Model Predictive Control Based AC Line Overload Alleviation by Using Multi-Terminal DC Grids

机译:多端子直流电网基于模型预测控制的交流线路过载减轻

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The increasing power/load demand is becoming a new concern for the grid operators as it can potentially overload transmission lines. Among advantages of a multi-terminal dc (MTDC) grid, its high controlability makes it a promising asset for ac line overload alleviation. This paper proposes a model predictive control based strategy, which regularly updates the power setpoints of the MTDC converter stations and ac generators to alleviate ac line overloads. To compute and update the power setpoints, necessary measurements are received by the controller within regular time intervals. The proposed controller ensures that subsequent to any ac line overload, changing the power setpoints of the MTDC converter station does not cause any operation violation in the MTDC grid. Furthermore, it ensures that the ac voltage limits and voltage stability criteria are met to avoid voltage instability. Performance and effectiveness of the proposed controller are evaluated by simulation studies on two systems, i.e., the 39-bus New England system integrated with a 5-bus MTDC system and the IEEE 118-bus system connected to a 6-bus MTDC system. Simulation results confirm that the MTDC grid can play a major role in controlling active powers of most of the ac transmission lines.
机译:不断增长的功率/负载需求已成为电网运营商的新问题,因为它可能会使传输线过载。在多端子直流(MTDC)电网的优点中,其高可控制性使其成为减轻交流线路过载的有前途的资产。本文提出了一种基于模型预测控制的策略,该策略可定期更新MTDC换流站和交流发电机的功率设定点,以减轻交流线路过载。为了计算和更新功率设定点,控制器会在规则的时间间隔内接收必要的测量值。建议的控制器可确保在任何交流线路过载之后,更改MTDC转换器站的功率设定值不会在MTDC电网中引起任何操作违规。此外,它可以确保满足交流电压限制和电压稳定性标准,以避免电压不稳定。拟议控制器的性能和有效性通过对两个系统的仿真研究进行评估,即39总线新英格兰系统与5总线MTDC系统集成在一起,以及IEEE 118总线系统与6总线MTDC系统连接在一起。仿真结果证实,MTDC电网可以在控制大多数交流输电线路的有功功率中发挥主要作用。

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