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Output Filter Design for a Novel Dual-Input PV-Wind Power Converter by Energy Balance Principle

机译:基于能量平衡原理的新型双输入光伏风力发电机输出滤波器设计

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摘要

In this paper, a detailed and systematic derivation of the output filter in a novel dual-input photovoltaic (PV)-wind converter (DIPWC) is presented. The theoretical derivation is based on an energy balance principle. While the DIPWC operates in steady state, the amount of charged energy of the output filter will be equal to that of the energy pumped away within one switching cycle. From this zero net change in energy, the minimum value of the output filter can be found. With the determined value, the DIPWC is able to operate in continuous conduction for high power applications. The developed procedure of the inductance determination can be applied to other types of dual-input converters. Therefore, it makes significant contributions to the design toward a green-energy, multi-input converter. To verify the correctness of the mathematical analysis, the DIPWC—with the derived output inductance—is built and tested. Practical measurements and results have verified the inductance determination.
机译:在本文中,提出了一种新颖的双输入光伏(PV)-风转换器(DIPWC)中输出滤波器的详细和系统推导。理论推导基于能量平衡原理。当DIPWC在稳定状态下运行时,输出滤波器的带电能量将等于一个开关周期内泵送的能量。从能量的零净变化中,可以找到输出滤波器的最小值。通过确定的值,DIPWC可以连续导通以用于大功率应用。开发的电感确定程序可以应用于其他类型的双输入转换器。因此,它为绿色能源,多输入转换器的设计做出了重要贡献。为了验证数学分析的正确性,构建并测试了具有导出的输出电感的DIPWC。实际测量和结果验证了电感的确定。

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