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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >Bidirectional Three-Level Cascaded Converter With Deadbeat Control for HESS in Solar-Assisted Electric Vehicles
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Bidirectional Three-Level Cascaded Converter With Deadbeat Control for HESS in Solar-Assisted Electric Vehicles

机译:具有无差拍控制的双向三级串级变流器,用于太阳能辅助电动汽车中的HESS

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This article presents a deadbeat-based method for the hybrid energy storage system (HESS) in solar-assisted electric vehicles (EVs), using a new bidirectional three-level cascaded (BTLC) converter. Moreover, photovoltaic (PV) panels are also considered in the system, because the proposed method is designed for solar-assisted EV applications to achieve a longer driving range. The proposed BTLC converter can integrate the battery and the supercapacitor as an HESS to effectively mitigate the power mismatch between the PV power generation and the load power consumption for the solar-assisted EVs. The BTLC converter is superior to the conventional parallel-connected bidirectional battery/supercapacitor converters from the perspectives of related component size reduction and control flexibility. To regulate the BTLC converter, a deadbeat-based method is proposed, which can provide the proper power management for the battery and the supercapacitor, and maintain the bus voltage. The design and implementation of the proposed deadbeat-based method are analyzed in detail. A scaled-down prototype of the proposed BTLC converter is built for the experimental verification. The simulation and experimental results are presented and compared to verify the effectiveness of the deadbeat-based method for the HESS with the proposed BTLC converter.
机译:本文介绍了一种基于死拍的太阳能辅助电动汽车(EV)混合动力储能系统(HESS)的方法,该方法使用了新型双向三级级联(BTLC)转换器。此外,系统中还考虑了光伏(PV)面板,因为建议的方法是为太阳能辅助EV应用设计的,以实现更长的行驶距离。拟议中的BTLC转换器可以将电池和超级电容器集成为HESS,以有效缓解太阳能发电EV的PV发电与负载功耗之间的功率失配。从减小相关组件尺寸和控制灵活性的角度来看,BTLC转换器优于传统的并联双向电池/超级电容器转换器。为了调节BTLC转换器,提出了一种基于无差拍的方法,该方法可以为电池和超级电容器提供适当的电源管理,并保持总线电压。详细分析了所提出的基于无差拍的方法的设计和实现。所提出的BTLC转换器的缩小原型用于实验验证。给出了仿真和实验结果,并进行了比较,以验证所提出的BTLC转换器用于HESS的基于无差拍方法的有效性。

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