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Analysis of fuzzy logic controller based bi-directional DC-DC converter for battery energy management in hybrid solar/wind micro grid system

机译:混合太阳能/风电网系统电池能源管理模糊逻辑控制器的基于模糊逻辑控制器的双向DC-DC转换器分析

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This paper proposes a fuzzy logic-based battery energy management system in hybrid renewable system. The novel topology consists of solar and wind energy system-based input sources and a battery bank to store the energy when in excess. The PV-Wind source is equipped with unidirectional boost converter whereas, the battery storage system is connected to the system with a bi-directional DC/DC converter. The main novelty of this research is the fuzzy logic-based battery management system which charges and discharges into the DC bus system based on the supply-load demand. The fuzzy logic controller (FLC) based maximum power point tracking (MPPT) is used in the PV and wind energy conversion system (WECS) to track the maximum available power for the different irradiance and wind velocity respectively. The obtained results are compared to conventional P&O MPPT control algorithm to find the effectiveness of the system. A 500 W PV system and a 500 W Permanent magnet synchronous generator (PMSG) based WECS is implemented for its simplicity and high efficiency. The proposed control topology is designed and tested using MATLAB/Simulink.
机译:本文提出了混合再生系统中的模糊逻辑基电池能量管理系统。新颖的拓扑包括基于太阳能和风能系统的输入源和电池组,以在超过时将能量存储在一起。 PV-风源配有单向升压转换器,而电池存储系统通过双向DC / DC转换器连接到系统。本研究的主要新颖性是基于模糊的基于逻辑的电池管理系统,其基于供应负载需求对DC总线系统充电和放电。基于模糊的逻辑控制器(FLC)的最大功率点跟踪(MPPT)用于PV和风能转换系统(WEC),以分别跟踪不同辐照度和风速的最大可用功率。将获得的结果与传统的P&O MPPT控制算法进行比较,以找到系统的有效性。为其简单和高效率实现了500 W光伏系统和500 W基于永磁同步发电机(PMSG)的WECS。使用MATLAB / SIMULINK设计和测试所提出的控制拓扑。

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