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A Multiport Bidirectional DC–DC Converter for Hybrid Renewable Energy System Integration

机译:用于混合再生能源系统集成的多端口双向直流转换器

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The bidirectional power flow in most of the existing four-port converters is achieved on the battery port located on the low voltage side, i.e., the battery is charged by the energy sources and discharged to the dc link on the high voltage side. The lack of the bidirectional power flow at the dc link prevents them from managing the power at the system level. In this article, a bidirectional four-port dc-dc converter is proposed for the integration of the hybrid renewable energy system to a dc microgrid. The proposed converter uses the least number of devices compared with the existing bidirectional multiport converters. The bidirectional battery and the dc-link ports make it a good candidate for the dc-microgrid application in which the system-level power management is desired. The working principle of the converter is first analyzed, and the power transferred by the transformer and the zero-voltage switching (ZVS) conditions are derived. Then, the converter is designed to meet the requirements of the power rating and soft switching. The proposed converter is used to interface a wind turbine, a photovoltaic panel, a battery bank, and the dc microgrid. The experiments are carried to testify the performance in both steady state and the transient. The steady-state waveforms have validated the power relationship as well as the critical ZVS conditions while maintaining relatively high efficiency. The transient testing results show that the converter can switch from one scenario to another under the different conditions. This article is accompanied by a video demonstrating the converter in the real-time operation.
机译:在位于低压侧的电池端口上实现了大多数现有四端口转换器中的双向功率流,即,电池由能量源充电并放电到高压侧的DC链路。 DC链路上的双向功率流量缺乏防止它们在系统级别管理电源。在本文中,提出了一种双向四端口DC-DC转换器,用于将混合再生能源系统集成到DC微电网。与现有双向多端口转换器相比,所提出的转换器使用最少的设备。双向电池和DC-Link端口使其成为DC微电网应用的良好候选者,其中需要系统级电源管理。首先分析转换器的工作原理,衍生由变压器传递的功率和零电压切换(ZVS)条件。然后,转换器旨在满足额定功率和软切换的要求。所提出的转换器用于接口风力涡轮机,光伏面板,电池组和DC微电网。携带实验以证明稳态和瞬态的性能。稳态波形已经验证了电力关系以及关键ZVS条件,同时保持相对高的效率。瞬态测试结果表明,转换器可以在不同条件下从一个场景切换到另一个场景。本文伴随着在实时操作中演示转换器的视频。

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