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Bidirectional Multiple-Port Three-Level DC-DC Converter for HESS in DC Microgrids

机译:双向多端口三级DC-DC转换器,用于DC微电网中的HESS

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This paper proposes a bidirectional multiple-port three-level (BMPTL) DC-DC converter with two-stage structure for the hybrid energy storage system (HESS). The advantages of the proposed converter over the conventional converters for HESSs including reduced component size, superior extension capability and better control flexibility. These advantages results from the two-stage structure, the availability of three voltage levels, and the multiple-port design. A new control method based on deadbeat control strategy has been developed to regulate the BMPTL DC-DC converter. The proposed deadbeat-based method can mitigate the power imbalanced in DC microgrid and allocate proper power assignment for the battery and supercapacitor according to their characteristics simultaneously. To conduct the verification, a DC microgrid simulation model including the PV, load and HESS interfaced by the proposed BMPTL DC-DC converter is built. The simulation results are discussed in detail to demonstrate the effectiveness of the proposed BMPTL DC-DC converter with the deadbeat-based method.
机译:本文提出了一种双向多端口三级(BMPTL)DC-DC转换器,具有用于混合能储能系统(HESS)的两级结构。所提出的转换器在传统转换器上用于HESS的优点,包括降低的部件尺寸,卓越的延伸能力和更好的控制柔韧性。这些优点来自两级结构,三个电压电平的可用性和多端口设计。已经开发了一种基于止血控制策略的新控制方法来调节BMPTL DC-DC转换器。所提出的基于死匹配的方法可以减轻直流微电网中的功率,并同时根据其特性为电池和超级电容器分配适当的功率分配。为了进行验证,构建了由所提出的BMPTL DC-DC转换器接口的PV,负载和HESS的DC微电网模拟模型。详细讨论了仿真结果,以证明所提出的BMPTL DC-DC转换器具有基于死匹配的方法的有效性。

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