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THD Analysis of Cascaded H-Bridge Inverter with Fuzzy Logic Controller

机译:级联H桥逆变器的THD分析与模糊逻辑控制器

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In recent days, the multilevel inverter technology is widely applied to domestic and industrial applications for medium voltage conversion. But, the power quality issues of the multilevel inverter limit the usage of much sensitive equipment like medical instruments. The lower distortion level of the output voltage and current can generate a quality sinusoidal output voltage in inverters and they can be used for many applications. The harmonics can cause major problems in equipments due to the nonlinear loads connected with the power system. So, it is necessary to minimize the losses to raise its overall efficiency. In this paper, a new topology of seven level asymmetrical cascaded H-bridge multilevel inverter with a Fuzzy logic controller had been implemented to reduce the Total Harmonic Distortion (THD) and to improve the overall performance of the inverter. The proposed model is well suited for use with a solar PV application. In this topology, only six IGBT switches are used with three different voltage ratings of PV modules (1:2:4). The lower number of semiconductor switches leads to minimizing overall di/dt ratings and voltage stress on each switches and switching losses. The gate pulses generated by Sinusoidal Pulse Width Modulation (SPWM) technique with a Fuzzy logic controller are also introduced. A buck-boost converter is used to maintain the constant PV voltage level integrated by an MPPT technique followed by Perturb and Observer algorithm is also implemented. The MPPT is used to harness the maximum power of solar radiations under its various climatic conditions. The new topology is evaluated by a Matlab/Simulink model and compared with a hardware model. The results proved that the THD achieved by this topology is 1.66% and realized that it meets the IEEE harmonic standards.
机译:近年来,多电平逆变器技术被广泛应用于中压转换的家庭和工业应用。但是,多电平逆变器的电能质量问题限制了许多敏感设备(如医疗仪器)的使用。输出电压和电流的较低失真水平可以在逆变器中生成高质量的正弦输出电压,它们可以用于许多应用。由于与电力系统相连的非线性负载,谐波会在设备中引起重大问题。因此,有必要使损失最小化以提高其整体效率。为了降低总谐波失真(THD)并提高逆变器的整体性能,本文采用具有模糊逻辑控制器的七电平非对称级联H桥多电平逆变器的新拓扑。提出的模型非常适合与太阳能光伏应用一起使用。在此拓扑中,仅使用六个IGBT开关,并具有三个不同的光伏模块额定电压(1:2:4)。半导体开关数量的减少导致总di / dt额定值和每个开关上的电压应力以及开关损耗最小。还介绍了通过具有模糊逻辑控制器的正弦脉冲宽度调制(SPWM)技术生成的选通脉冲。使用降压-升压转换器来保持恒定的PV电压水平,该电压由MPPT技术集成,然后是Perturb,并且还实现了Observer算法。 MPPT用于在各种气候条件下利用太阳辐射的最大功率。新的拓扑由Matlab / Simulink模型评估,并与硬件模型进行比较。结果证明,该拓扑实现的THD为1.66%,并实现了其符合IEEE谐波标准。

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