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Constant Voltage Control Using Fuzzy Logic Controller (FLC) to Overcome The Unstable Output Voltage of MPPT in DC Microgrid System

机译:恒压控制使用模糊逻辑控制器(FLC)克服DC微电网系统中MPPT的不稳定输出电压

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Research and development on DC microgrid is increasingly being done recently. This development aims to reduce or even replace the electrical energy generated from fossil energy. Therefore, DC microgrid is present to be the solution of future electric energy by using renewable energy. Many energy sources are used in microgrid systems, but the most widely used is photovoltaic (PV) to convert solar energy into electrical energy. Unfortunately, the system using PV is very limited in its usage time, so it needs a backup energy source to help with the power needs of the load when there is no sun. In addition, most PV systems also use maximum power point tracking (MPPT) using an algorithm to maximize power from PV. The use of MPPT in PV system has a positive impact that can improve the efficiency of power on microgrid but on the other hand this MPPT system can cause problems that is unstable voltage and can exceed DC bus voltage. Therefore it needs constant voltage control to keep the voltage on the DC bus remains stable and located at a set point that has been determined. So in this research will propose fuzzy logic controller (FLC) to keep the voltage on DC bus remain constant. The FLC will be applied to the converter buck while the MPPT control using the flower pollination algorithm (FPA) will be applied to the coupled inductor SEPIC converter.
机译:最近正在进行DC微电网的研究和开发。该发展旨在减少甚至取代从化石能量产生的电能。因此,通过使用可再生能量存在DC微电网作为未来电能的解决方案。许多能源用于微电网系统,但最广泛使用的是光伏(PV),将太阳能转化为电能。不幸的是,使用PV的系统在使用时间非常有限,因此当没有太阳时,它需要备用能源来帮助负载的电源需求。此外,大多数PV系统还使用算法使用最大功率点跟踪(MPPT)来最大化PV的电力。 MPPT在光伏系统中使用MPPT具有积极的影响,可以提高微电网的电力效率,但另一方面,该MPPT系统可能导致电压不稳定的问题,并且可以超过直流母线电压。因此,它需要恒定电压控制以保持直流总线上的电压保持稳定并位于已经确定的设定点。因此,在本研究中,将提出模糊逻辑控制器(FLC)以保持直流总线上的电压保持恒定。 FLC将应用于转换器降压,而使用花授粉算法(FPA)的MPPT控制将应用于耦合电感器SEPIC转换器。

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