Fuzzy Logic Direct Power Control of a Bidirectional Three-Phase ACIDC Converter

Faouzi Tlili, F. Bacha
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引用次数: 2

Abstract

This paper develops a modern control strategy in order to command an AC/DC converter. This technique is a combination between Direct Power Control and Fuzzy Logic (FL-DPC). First of all, the first phase consists in mathematical modeling of the proposed converter using Kirchhoff's equations. Subsequently, the second part is devoted to the description of the main blocks constituting the fuzzy controller. Thereafter, he developed the inputs of the fuzzy controller as well as its output. In a concrete way, the author specified as inputs; the sector and the two errors of the active and reactive powers. However, the control vector is designated as an output. Therefore, with a view to accomplish good performances like; a sinusoidal waveform of current, a small rate of THD, an almost unitary power factor and a reliable adjustment of the DC bus voltage, the author resorted to the Matlab/Simulink environment. Finally, the bidirectional power flow is checked based on the simulation of three scenarios; inverter mode, rectifier mode and shut-down mode.
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双向三相ACIDC变换器的模糊逻辑直接功率控制
本文提出了一种现代控制策略,用于控制交流/直流变换器。该技术是直接功率控制和模糊逻辑(FL-DPC)的结合。首先,第一阶段包括使用基尔霍夫方程对所提出的转换器进行数学建模。随后,第二部分对构成模糊控制器的主要模块进行了描述。此后,他开发了模糊控制器的输入和输出。在具体方式上,作者指定为输入;有功和无功的扇区和两种误差。然而,控制矢量被指定为输出。因此,为了完成良好的表演喜欢;在Matlab/Simulink环境下,实现了电流波形正弦、THD率小、功率因数几乎一致以及直流母线电压的可靠调节。最后,基于三种场景的仿真,对双向潮流进行了校核;逆变模式、整流模式和关机模式。
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