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Reduced Rule Based Fuzzy Logic Controlled Isolated Bidirectional Converter Operating in Extended Phase Shift Control for Bidirectional Energy Transfer

机译:基于简化规则的模糊逻辑控制隔离式双向转换器,在扩展相移控制中进行双向能量传输

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Bidirectional energy transfer capability with high efficiency and reduced cost is fast gaining prominence in the central part of a lot of power conversion systems in Direct Current (DC) microgrid. Preferably, under the economics constraints, these systems utilise a single high efficiency power electronics conversion system and a dual active bridge converter. In this paper, modeling and performance of Dual Active Bridge (DAB) converter with Extended Phase Shift (EPS) is evaluated with two batteries on both sides of DC bus and bidirectional energy transfer is facilitated and this is further compared with the Single Phase Shift (SPS) mode of operation. Optimum operating zone is identified through exhaustive simulations using MATLAB/Simulink and SimPowerSystem software. Reduced rules based fuzzy logic controller is implemented for closed loop control of DAB converter. The control logic enables the bidirectional energy transfer within the batteries even at lower duty ratios. Charging and discharging of batteries is supervised by the fuzzy logic controller. State of charge, current and voltage for both the batteries are plotted in the battery characteristics. Power characteristics of batteries are also obtained using MATLAB simulations.
机译:双向(DC)微电网中许多电源转换系统的中心部分,高效,低成本的双向能量传输能力迅速得到重视。优选地,在经济约束下,这些系统利用单个高效电力电子转换系统和双有源桥式转换器。在本文中,通过在直流母线两侧使用两个电池来评估具有扩展相移(EPS)的双有源桥(DAB)转换器的建模和性能,并促进了双向能量传输,并将其与单相移( SPS)操作模式。通过使用MATLAB / Simulink和SimPowerSystem软件进行详尽的仿真,可以确定最佳的操作区域。基于简化规则的模糊逻辑控制器用于DAB转换器的闭环控制。即使在较低的占空比下,控制逻辑也可以实现电池内的双向能量传输。电池的充电和放电由模糊逻辑控制器监控。两个电池的充电状态,电流和电压在电池特性中作图。电池的功率特性也可以通过MATLAB仿真获得。

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