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Adaptive fuzzy control for power-frequency characteristic regulation in high-RES power systems

机译:高分辨率电力系统工频特性调节的自适应模糊控制

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摘要

Future power systems control will require large-scale activation of reserves at distribution level. Despite their high potential, distributed energy resources (DER) used for frequency control pose challenges due to unpredictability, grid bottlenecks, etc. To deal with these issues, this study presents a novel strategy of power frequency characteristic dynamic adjustment based on the imbalance state. This way, the concerned operators become aware of the imbalance location but also a more accurate redistribution of responsibilities in terms of reserves activations is achieved. The proposed control is based on the concept of “cells” which are power systems with operating capabilities and responsibilities similar to control areas (CAs), but fostering the use of resources at all voltage levels, particularly distribution grids. Control autonomy of cells allows increased RES hosting. In this study, the power frequency characteristic of a cell is adjusted in real time by means of a fuzzy controller, which curtails part of the reserves, in order to avoid unnecessary deployment throughout a synchronous area, leading to a more localised activation and reducing losses, congestions and reserves exhaustion. Simulation tests in a four-cell reference power system prove that the controller significantly reduces the use of reserves without compromising the overall stability.
机译:未来的电力系统控制将需要在配电级大规模激活储备。尽管具有巨大的潜力,但用于频率控制的分布式能源(DER)由于不可预测性,电网瓶颈等问题而面临挑战。针对这些问题,本研究提出了一种基于不平衡状态的新型功率频率动态调整策略。这样,相关的运营商就可以意识到不平衡的位置,而且可以更准确地重新分配储备金。提议的控制基于“单元”的概念,“单元”是具有类似于控制区域(CA)的运行能力和职责的电力系统,但鼓励在所有电压级别(尤其是配电网)上使用资源。细胞的控制自主性允许增加RES宿主。在这项研究中,通过模糊控制器实时调整电池的功率频率特性,该模糊控制器会削减部分储备,以避免在整个同步区域进行不必要的部署,从而导致局部激活并减少损耗,交通拥堵和储备耗尽。在四单元参考电源系统中的仿真测试证明,该控制器在不影响整体稳定性的情况下,显着减少了储备的使用。

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