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Analysis of Solar PV Application Based on Bidirectional Inverter

机译:基于双向逆变器的太阳能光伏应用分析

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摘要

Building a DC-DC converter with high step-up, low cost and high efficiency from low DC voltage is the requirement in many applications. It is achieved by employing a front end boost converter based full bridge inverter on bidirectional inverter. In conventional boost converter during device turn-off, voltage overshoot occurs across the semiconductor devices. So, an additional snubber or voltage clamping is required to limit the overshot voltage. It upturns the component’s count and losses making the converter less efficient. The above problem can be avoided by operate the converter with soft-switching method by using secondary modulation technique. Hence, it avoids the need of additional snubber or auxiliary circuit. Soft switching operation is proposed in the bidirectional inverter. Soft switching operation is achieved through the auxiliary circuit, which consist of two auxiliary switches, Front end converter and full bridge inverter. Bidirectional inverter allows current flow in both direction and therefore permits energy flow from the grid to storage when solar energy is not available. The theoretical analysis of the proposed converter is verified using simulation results.
机译:高升压,低成本和低直流电压的高效率建立DC-DC转换器是许多应用中的要求。通过在双向逆变器上采用基于前端升压转换器的全桥逆变器来实现。在设备关断期间的传统升压转换器中,在半导体器件上发生电压过冲。因此,需要额外的缓冲器或电压钳位来限制遮光电压。它会使组件的计数和损耗升高,使得转换器效率较低。通过使用二次调制技术,可以通过使用软切换方法操作转换器来避免上述问题。因此,它避免了需要额外的缓冲器或辅助电路。在双向逆变器中提出了软切换操作。通过辅助电路实现软切换操作,该辅助电路由两个辅助开关,前端转换器和全桥逆变器组成。双向逆变器允许在两个方向上流动,因此在太阳能不可用时允许从网格中的能量流到存储。使用仿真结果验证所提出的转换器的理论分析。

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