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Joint Control of Three-Level DC–DC Converter Interfaced Hybrid Energy Storage System in DC Microgrids

机译:直流微电网中三级DC-DC转换器接口混合储能系统的联合控制

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摘要

A new three-level bidirectional dc-dc converter configuration for the battery and supercapacitor (SC) energy storage systems in dc microgrids is presented in this paper. The PI-based control method is implemented to operate the proposed converter with hybrid energy storage system. Furthermore, joint control is utilized to obtain rapid dc-link voltage restoration and effective power sharing between battery and SC based on their respective characteristics. The system operating principle, controller design, stability analysis, simulation studies, and experimental studies are presented in this paper. The proposed three-level bidirectional dc-dc converter configuration can effectively integrate the battery and SC with the bidirectional power flow. The proposed control method provides the effective participation of the SC system which reduces the stress on the battery system. The presented converter configuration is effective in reducing the stress on the power semiconductors and provides better performance with smaller passive components. The experimental platform is built to test and validate the three-level bidirectional dc-dc converter and the proposed control method for the HESS.
机译:本文提出了一种用于直流微电网中电池和超级电容器(SC)储能系统的新型三级双向DC-DC转换器配置。实现了基于PI的控制方法,以使所建议的带有混合能量存储系统的变频器运行。此外,基于电池和SC各自的特性,联合控制用于获得快速的直流链路电压恢复和有效的功率共享。本文介绍了系统的工作原理,控制器设计,稳定性分析,仿真研究和实验研究。所提出的三级双向dc-dc转换器配置可以有效地将电池和SC与双向功率流集成在一起。所提出的控制方法提供了SC系统的有效参与,从而减少了对电池系统的压力。提出的转换器配置可有效降低功率半导体上的应力,并使用较小的无源元件提供更好的性能。该实验平台旨在测试和验证三电平双向DC-DC转换器以及HESS的控制方法。

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