微电网的减载研究

Neda Hajimohamadi, H. Bevrani
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引用次数: 4

摘要

与传统系统类似,在MG中必须具有可接受的电压和频率。由于pv等发电机的存在,mg具有可变性质。因此,mmo中的控制问题非常重要。MGs的稳定性能是通过并网方式实现的。但在孤岛模式下,它取决于初级、二级和紧急级别的适当控制器。在严重扰动之后,MG的安全可以通过紧急控制来建立,如关闭任何单元,需求侧管理,孤岛和减载。本文采用最大功率ppt算法提取光伏发电的最大功率。设计了一个控制器来稳定MG在孤岛期间的性能。并提出了作为隔离系统防止停电的最后措施之一的减载方案。
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On load shedding in microgrids
Similar to conventional systems, having acceptable voltage and frequency is necessary in a MG. MGs have variable nature due to the existence of the generators like PVs. Because of this, the control issue in MGs is important. The stable performance in MGs is realized by grid in grid-connected mode. But it depends on proper controllers in primary, secondary and emergency levels, in islanded mode. Security in MG following a severe disturbance can be established through emergency control like shutdown of any unit, demand side management, islanding and load shedding. In this paper, a MPPT algorithm is used to extract maximum power from PV sources. A controller is designed to stabilize MG performance during islanding. Also, a load shedding plan as one of the last actions to prevent blackout of isolated system is presented.
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