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A three-port three-phase isolated DC-DC converter feasible to PV connection on a DC distribution system

机译:一种三端口三相隔离式DC-DC转换器,可用于直流配电系统的光伏连接

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This paper presents a current-fed three-phase, three-port dc-dc converter with high-frequency isolation and bidirectional capability. Port I is fed by a battery bank, port II employs a set of photovoltaic (PV) modules and port III is connected to a dc link. The topology uses three single-phase full-bridge converters in the primary side and a three-phase full bridge converter in the secondary one. High-frequency isolation is realized by three single-phase transformers connected in open delta-wye configuration. The theoretical analysis is performed considering the fundamental component of the voltage across the transformers. Maximum power point tracking (MPPT), the battery current and power flow between the primary and secondary sides are controlled by the duty cycle variation of the primary-side switches and the phase shift variation between the primary and secondary bridges. In order to validate the study, computer simulations of the proposed system considering a 380-V dc link and rated power of 3.5 kW are carried out.
机译:本文提出了一种具有高频隔离和双向功能的电流馈电三相,三端口dc-dc转换器。端口I由电池组供电,端口II使用一组光伏(PV)模块,端口III连接至直流链路。该拓扑在初级侧使用三个单相全桥转换器,在次级侧使用一个三相全桥转换器。高频隔离是通过将三个单相变压器以开放三角洲配置连接在一起来实现的。进行理论分析时要考虑变压器两端电压的基本分量。最大功率点跟踪(MPPT),一次侧和二次侧之间的电池电流和功率流由一次侧开关的占空比变化以及一次电桥和二次电桥之间的相移变化控制。为了验证研究结果,在考虑380V直流链路和3.5 kW额定功率的情况下,对所提出系统进行了计算机仿真。

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