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Harmonics Reduction for Four-Leg Distribution Network-Connected Single Phase Transformerless PV Inverter System Using Diagonal Recurrent Neural Network

机译:使用对角递归神经网络的四腿配电网连接的单相无变压器光伏逆变器系统的谐波抑制

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This paper presents an analysis of the effects of solar irradiance on a single phase PV inverter system connected to a four-leg distribution system (FLDN). The proposed method aims to reduce current harmonic distortion (THDi) in the distribution system due to different and fluctuating irradiation. For this purpose, PV system with a capacity of 3.5 kW is connected to FLDN low voltage through an inverter voltage source (VSI) using intelligent control. This intelligent controller consist of: MPPT controller, constructive diagonal recurrent neural network controller (CDRNN), and synchronization and DQ transformation. The MPPT controller system automatically varies the voltage reference signal to obtain DC voltage, which extracts the maximum power from the PV string, while the DQ transformation block is used to convert the AC inverter output voltage and current into the synchronous reference frame. All of these signals are processed by the CDRNN controller to produce a PWM. Based on the simulation results using Matlab/Simulink, the THDi of FLDN was reduced from 5.09% into 4.63% in descent solar irradiance and 5.43% become 4.98% in ascend irradiance condition.
机译:本文介绍了太阳辐射对连接到四分支配电系统(FLDN)的单相PV逆变器系统的影响的分析。所提出的方法旨在减少由于辐射的不同和波动而引起的配电系统中的电流谐波畸变(THDi)。为此,使用智能控制通过逆变器电压源(VSI)将容量为3.5 kW的光伏系统连接到FLDN低压。该智能控制器包括:MPPT控制器,建设性对角递归神经网络控制器(CDRNN)以及同步和DQ转换。 MPPT控制器系统自动改变参考电压信号以获得直流电压,该直流电压从PV串中提取最大功率,而DQ转换模块用于将交流逆变器的输出电压和电流转换为同步参考帧。 CDRNN控制器处理所有这些信号以产生PWM。根据使用Matlab / Simulink进行的模拟结果,下降的太阳辐照度将FLDN的THDi从5.09%降低到4.63%,而在上升辐照条件下则为5.43%降低为4.98%。

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