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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Real-time implementation of three-level inverter-based D-STATCOM using neuro-fuzzy controller
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Real-time implementation of three-level inverter-based D-STATCOM using neuro-fuzzy controller

机译:使用神经模糊控制器实时实现基于三电平逆变器的D-STATCOM

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Real-time implementation of three-level inverter-based D-STATCOM using neuro-fuzzy controller Authors: RESUL ??TEL?, HAKAN A?IKG?Z, BE??R DANDIL, SERVET TUNCER Abstract: A distribution static compensator (D-STATCOM) is a custom power device connected in parallel to a power system to address electric power quality problems caused by reactive power and harmonics. To obtain high performance from a D-STATCOM, the D-STATCOM's extit{dq}-axis currents must be controlled in an internal control loop. However, control of the D-STATCOM's currents is difficult because of its nonlinear structure, cross-coupling effect between the extit{d}- and extit{q}-axis, undefined dynamics, and fast changing load. Therefore, the controller to be preferred for a D-STATCOM should have a nonlinear and robust structure. In this study, a neuro-fuzzy controller (NFC), which is a robust and nonlinear controller, is proposed for extit{dq}-axis current control of a D-STATCOM. A DSP-based experimental setup is built for real-time control. The basic building block of the experimental setup is a three-level cascaded inverter. This inverter is constructed by using three IPM intelligent modules. A DS1103 controller card is used for real-time control of the D-STATCOM's experimental setup. The control algorithm is prepared in MATLAB/Simulink software and loaded to the DS1103 controller card. The performance of the NFC current-controlled D-STATCOM is tested for different load conditions: no load to full inductive, no load to full capacitive, full inductive to full capacitive, and full capacitive to full inductive. For this aim, the reactive current setpoint is changed as a step. The experimental results are presented to show the efficiency of the proposed controller under different load conditions. Keywords: D-STATCOM, electric power quality, neuro-fuzzy controller, three-level H-bridge inverter Full Text: PDF.
机译:使用神经模糊控制器实时实现基于三电平逆变器的D-STATCOM作者:RESUL,TEL,HAKAN AIKK,Z BERDANDIL,SERVET TUNCER摘要:配电静态补偿器(D -STATCOM)是与电源系统并联的定制电源设备,用于解决由无功功率和谐波引起的电能质量问题。为了从D-STATCOM获得高性能,必须在内部控制回路中控制D-STATCOM的 textit {dq}轴电流。但是,由于D-STATCOM的非线性结构, textit {d}-轴和 textit {q}轴之间的交叉耦合效果,不确定的动态特性以及快速变化的负载,因此控制D-STATCOM的电流非常困难。因此,D-STATCOM首选的控制器应具有非线性且坚固的结构。在这项研究中,提出了一种神经模糊控制器(NFC),它是一种鲁棒的非线性控制器,用于D-STATCOM的 textit {dq}轴电流控制。建立了基于DSP的实验设置以进行实时控制。实验装置的基本组成部分是三级级联逆变器。该逆变器使用三个IPM智能模块构成。 DS1103控制器卡用于D-STATCOM的实验设置的实时控制。该控制算法是在MATLAB / Simulink软件中准备的,并已加载到DS1103控制器卡中。 NFC电流控制的D-STATCOM的性能针对不同的负载条件进行了测试:空载到全电感,空载到全电容,全电感到全电容,以及全电容到全电感。为此,无功电流设定值作为一个步骤被改变。实验结果表明该控制器在不同负载条件下的效率。关键字:D-STATCOM,电能质量,神经模糊控制器,三电平H桥逆变器全文:PDF。

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