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Wind power conversion based on quasi-z source inverter

机译:基于准Z源逆变器的风电转换

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摘要

The variable wind generator output due to unpredictable variation in wind speed is suitably controlled through a closed loop system employing the buck-boost capability of quasi z-source inverter derived from traditional z-source inverter (ZSI) and is converted into a three phase power. The quasi z-source inverter inheriting all the advantages of the traditional ZSI replaces the conventional PWM inverter in the system. Additionally, the quasi ZSI has the unique advantages of lower component ratings and continuous dc current from the source. The closed loop controller carefully monitors wind generator voltage and controls the shoot-through duty cycles of the inverter employing third harmonic injection constant boost control to develop a three phase steady boosting voltage, which is not possible by conventional PWM control. The whole system is modeled, analysed and verified through simulation and hardware arrangement. It provides the unique output voltage regulation by making an appropriate choice of boost factor under both arbitrary generator voltage and variable load conditions. The proposed closed loop system, therefore, can be used for smooth and effective dynamic and steady state control maintaining the three phase output at a desired level.
机译:由于风速的不可预测变化而导致的可变风力发电机输出可通过闭环系统进行适当控制,该闭环系统采用源自传统z源逆变器(ZSI)的准z源逆变器的降压-升压功能,并将其转换为三相功率。继承了传统ZSI的所有优点的准z源逆变器取代了系统中的传统PWM逆变器。此外,准ZSI还具有较低的组件额定值和来自源的连续直流电流的独特优势。闭环控制器仔细监控风力发电机的电压,并通过三次谐波注入恒定升压控制来控制逆变器的直通占空比,以产生三相稳定升压电压,这是常规PWM控制无法实现的。通过仿真和硬件布置对整个系统进行建模,分析和验证。通过在任意发电机电压和可变负载条件下适当选择升压因子,可以提供独特的输出电压调节。因此,提出的闭环系统可用于平稳有效的动态和稳态控制,以将三相输出保持在所需水平。

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