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Multiport DC–DC–AC Modular Multilevel Converters For Hybrid AC/DC Power Systems

机译:用于混合AC / DC电源系统的多端口DC-DC-AC模块化多电平转换器

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Hybrid ac/dc power systems will rely on power electronics to enable controlled energy exchange between different dc and ac systems. Multiport dc-dc-ac (MP-DC2AC) converters offer the ability to exchange power between two dc systems and an ac system using a single converter structure. Potential benefits include reduced energy conversion stages and a more compact station footprint. To date, limited information is available on modeling, operation, and control of MP-DC2AC converters suitable for HVDC and MVDC applications. This paper helps to fill this gap by presenting a generalized modeling and control framework for two yet unexploredMP-DC2AC modular multilevel converters. Based on derived analytical models of internal power transfer mechanisms, a dynamic controller is proposed that allows independent control of port power flows while keeping capacitor voltages regulated. Results are validated by extensive time-domain simulations. A comprehensive comparative analysis between four different MP-DC2AC topologies is carried out.
机译:混合交流/直流电源系统将依靠电力电子设备来实现不同直流和交流系统之间的受控能量交换。多端口dc-dc-ac(MP-DC2AC)转换器具有使用单个转换器结构在两个dc系统和一个ac系统之间交换功率的能力。潜在的好处包括减少能源转换阶段和更紧凑的电站占地面积。迄今为止,关于适用于HVDC和MVDC应用的MP-DC2AC转换器的建模,操作和控制的信息有限。本文通过为两个尚未开发的MP-DC2AC模块化多电平转换器提供通用的建模和控制框架,帮助填补这一空白。基于内部功率传输机制的推导分析模型,提出了一种动态控制器,该控制器允许独立控制端口功率流,同时保持电容器电压的稳定。通过大量的时域仿真验证了结果。对四种不同的MP-DC2AC拓扑进行了全面的比较分析。

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