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Self-intelligent active management system for electrical distribution networks with photovoltaic systems

机译:具有光伏系统的配电网络的自智能主动管理系统

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The amount of small-scaled renewable energy sources, such as photovoltaic systems and small wind turbines, is anticipated to increase on the low-voltage distribution networks, in order to reduce the greenhouse gas emissions. However, the growth of the renewable energy sources on the network may result in the voltage rise and voltage unbalance, hence leading to the deterioration of the network efficiency, overloading of the transformers, nuisance tripping of the protection system and malfunction of the customers' equipment. To ensure an effective operation of the distribution network with the increased penetration of renewable energy sources, a self-intelligent active management system is developed and installed on the network, to mitigate voltage rise and voltage unbalance. This paper gives an overview of an experimental set up of the low voltage network and the active management system at Universiti Tunku Abdul Rahman in Malaysia. Experimental results are presented in this paper to illustrate the effectiveness of the proposed self intelligent active management system (SAMS) in mitigating voltage rise and voltage unbalance under intermittent PV output power penetration.
机译:低压配电网络上的小型可再生能源(例如光伏系统和小型风力涡轮机)的数量有望增加,以减少温室气体的排放。但是,网络上可再生能源的增长可能会导致电压上升和电压不平衡,从而导致网络效率下降,变压器过载,保护系统的故障跳闸以及用户设备的故障。 。为了确保随着可再生能源的普及,配电网络的有效运行,开发了一种自智能的主动管理系统,并将其安装在网络上,以减轻电压上升和电压不平衡的情况。本文概述了位于马来西亚的Tuni Abdul Rahman大学的低压网络和主动管理系统的实验设置。本文提供了实验结果,以说明所提出的智能主动管理系统(SAMS)在缓解间歇性PV输出功率穿透下的电压升高和电压不平衡方面的有效性。

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