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Novel Fuzzy Controlled Energy Storage for Low-Voltage Distribution Networks with Photovoltaic Systems under Highly Cloudy Conditions

机译:高多云条件下光伏系统低压配电网的新型模糊控制储能

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The amount of small-scaled renewable energy sources is anticipated to increase on the low-voltage distribution networks for the improvement of energy security and reduction of greenhouse gas emission. Malaysia has a high solar irradiance level that is ideal for photovoltaic (PV) systems. However, the growth of the PV systems on the low-voltage distribution networks can create a number of technical issues such as voltage rise, voltage unbalance, and reversed power flow. Usually, these issues happen with little fluctuations. However, these issues tend to fluctuate very rapidly in Malaysia because this region has a very low clear sky index. A large amount of clouds often passes over the country, hence making the incident solar irradiance to be highly scattered and fluctuating. Therefore, the power output of the PV systems fluctuates substantially. To ensure an effective operation of the distribution networks with the PV systems, a novel fuzzy control method is developed and implemented to govern the operation of an energy storage system consisting of a bidirectional inverter coupled with lead-acid batteries. The fuzzy controlled energy storage system is able to mitigate the fluctuating voltage rises and voltage unbalances on the networks by actively manipulating the flow of real power between the networks and the batteries. To verify the effectiveness of this fuzzy control method, an experimental network integrated with 7.2-kW photovoltaic systems was set up. A number of case studies are performed to show that the proposed fuzzy control system is able to mitigate fluctuating voltage rises and voltage unbalances under the highly intermittent power output of the PV systems.
机译:低压配电网络上的小型可再生能源的数量有望增加,以提高能源安全性并减少温室气体排放。马来西亚的太阳辐照度很高,非常适合光伏(PV)系统。但是,低压配电网络上光伏系统的增长会产生许多技术问题,例如电压上升,电压不平衡和反向功率流。通常,这些问题很少发生。但是,由于马来西亚的晴空指数非常低,因此这些问题在马来西亚的波动往往非常迅速。大量的云层经常在全国范围内传播,因此使入射的太阳辐照度高度分散和波动。因此,PV系统的功率输出大幅波动。为了确保光伏系统对配电网络的有效运行,开发并实施了一种新颖的模糊控制方法来控制由双向逆变器和铅酸电池组成的储能系统的运行。模糊控制的能量存储系统能够通过主动控制网络和电池之间的有功功率流量来减轻网络上波动的电压上升和电压不平衡。为了验证这种模糊控制方法的有效性,建立了一个与7.2kW光伏系统集成的实验网络。大量案例研究表明,所提出的模糊控制系统能够在光伏系统的高间歇性功率输出下减轻波动的电压上升和电压不平衡。

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