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Performance evaluation of Z-source inverter and voltage source inverter for renewable energy applications

机译:可再生能源应用的Z源逆变器和电压源的性能评估

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摘要

There have been a technological advancement in the traditional current source inverter (CSI) and voltage source inverter (VSI), by reducing the number of power processing stages as well as reducing the number of components used in the system; impedance network does it all, whereas in case of traditional inverter complex circuitries are required to buck and boost the input DC voltage. Some modifications have been done in traditional pulse width modulation (PWM) pulses to achieve shoot-through pulses, which is only suitable for the Z-source inverter, (in VSI and CSI, it may destroy the inverter bridge due to short-circuiting) for boosting or bucking of input DC voltage. Impedance network consists of passive elements which help in converting direct current (DC) to alternating current in a single stage. This paper compares conventional as well as the up-coming Z-source inverter and discusses operating modes of the Z-source inverter, mathematical equations, and different pulse width modulation techniques. ZSI is the most suitable configuration for solar photovoltaic applications where sunlight is abundantly available. Simulink modelling is done using software MATLAB. A laboratory prototype is prepared and the results are verified. Spartan-3E is used for giving PWM pulses for voltage source and Z-source inverter.
机译:传统的当前源逆变器(CSI)和电压源逆变器(VSI)已经有了技术的进步,通过减少功率处理阶段的数量以及减少系统中使用的组件数量;阻抗网络可以做到这一点,而在传统的逆变器复合物中,需要逆转和增强输入直流电压。在传统的脉冲宽度调制(PWM)脉冲中进行了一些修改以实现射击脉冲,仅适用于Z源逆变器(在VSI和CSI中,它可能会由于短路而破坏逆变器桥)用于提高输入直流电压的升压。阻抗网络由被动元素组成,这些元素有助于将直流电流(DC)转换为单个阶段的交流电。本文比较了传统和上播的Z源逆变器,并讨论了Z源逆变器,数学方程和不同脉冲宽度调制技术的操作模式。 ZSI是用于太阳能光伏应用的最合适的配置,在那里阳光充足。 Simulink建模是使用软件MATLAB完成的。准备了实验室原型,并验证了结果。 Spartan-3E用于给出电压源和Z源逆变器的PWM脉冲。

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