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Technological assessment of DC-DC multiple-input converters as an interface for renewable energy applications

机译:DC-DC多输入转换器作为可再生能源应用接口的技术评估

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This paper explores important characteristics of multiple-input converters (MIC) serving as a power electronic interface for renewable energy applications. Advantages of MICs are explained through an example with a photovoltaic (PV) system. Feasible MIC topologies for renewable energy applications are discussed and classified into four different MIC families. According to their different configurations, each MIC family is suggested for certain renewable energy applications. Furthermore, possible operating issues of MICs, such as relatively low efficiency, are also discussed. Design considerations for extending MIC's voltage step-up ratio and achieving maximum power point tracking on all PV sources through are commented. Issues in modeling and control are also discussed, showing that it is important when evaluating closed-loop stability to consider nonlinear and time-varying characteristics of both renewable energy sources and the MIC. Design and synthesis of a multivariable controller that achieves quadratically stabilization and satisfies the H and pole-placement constraints for MICs is reviewed, too.
机译:本文探讨了用作可再生能源应用的电力电子接口的多输入转换器(MIC)的重要特性。通过以光伏(PV)系统为例来说明MIC的优势。讨论了可再生能源应用的可行MIC拓扑,并将其分为四个不同的MIC系列。根据它们的不同配置,建议将每个MIC系列用于某些可再生能源应用。此外,还讨论了MIC的可能工作问题,例如效率相对较低。评论了扩展MIC的升压比并在所有PV电源上实现最大功率点跟踪的设计注意事项。还讨论了建模和控制中的问题,这表明在评估闭环稳定性时,考虑可再生能源和MIC的非线性和时变特性非常重要。本文还对实现二次稳定并满足H 的多变量控制器的设计与综合进行了综述,并对MIC的极点布置约束进行了综述。

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