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Optimal Analysis and Design of DC-DC Converter to Achieve High Voltage Conversion Gain and High Efficiency for Renewable Energy Systems

机译:可再生能源系统实现高电压转换增益和高效率的DC-DC转换器的优化分析和设计

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High conversion gain of voltage is generally required to interface various renewable energy sources, such as PV modules. This paper focuses on the optimal analysis and design of non-isolated DC-DC converters to meet the high-step-up gain requirement and achieve high efficiency. The proposed topology utilizes the coupled inductor technique to achieve high step-up voltage conversion ratio. A power loss model is developed to identify losses in each component for efficiency enhancement. The switch has relatively low voltage stress since leakage energy is directly transferred to the output to avoid voltage spikes across it. In addition, the coupled inductor alleviated the reverse recovery issue of the diode. The circuit operation and steady-state analysis of the proposed converter are presented in detail. A prototype circuit is built and tested to prove the circuit analysis and optimal design.
机译:通常需要高电压转换增益来连接各种可再生能源,例如PV模块。本文着重于非隔离式DC-DC转换器的优化分析和设计,以满足高升压增益要求并实现高效率。所提出的拓扑利用耦合电感器技术来实现高升压电压转换比。开发了功率损耗模型以识别每个组件中的损耗以提高效率。开关具有相对较低的电压应力,因为泄漏能量会直接传递到输出,以避免其两端出现电压尖峰。另外,耦合电感器减轻了二极管的反向恢复问题。详细介绍了所提出的转换器的电路操作和稳态分析。构建并测试了原型电路,以证明电路分析和最佳设计。

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