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储能系统技术 储能系统 ★ 5.0

基于电池的全电飞机辅助电源系统:一种新型变换器结构

A Battery-Based Auxiliary Power System for an All-Electric Aircraft: A Novel Converter Configuration

作者 Giuseppe Bossi · Concettina Buccella · Carlo Cecati · Francesco Simonetti · Alfonso Damiano
期刊 IEEE Transactions on Industry Applications
出版日期 2025年6月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 全电飞机 APU DC/AC转换器 三有源桥 五电平级联H桥
语言:

中文摘要

在全电飞机中,基于化石燃料的辅助动力装置(APU)被配备电池或燃料电池的储能系统所取代。本文针对轻型全电飞机5千瓦的辅助动力装置,提出了一种新型的115V<sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">rms</sub>、400赫兹的直流/交流转换器。所提出的直流/交流转换器采用由三有源桥(TAB)供电的五电平级联H桥(5 - LCHB)。三有源桥允许在连接到单个电化学电池组时对其两个输出端口进行独立控制。三绕组高频变压器提供电气隔离,赋予转换系统可靠性。本文对三有源桥输出端口之间建立的固有解耦条件进行了建模,并通过在PLECS和Matlab/Simulink上进行联合仿真研究对所提出的直流/交流转换器设计进行了评估。所提出的系统已在缩小比例的转换器原型上进行了实验验证。结果表明,输出端口之间达到了三有源桥的固有解耦条件,从而在五电平级联H桥中实现了选择性谐波消除脉冲有效宽度调制(SHE - PWM)。此外,即使在输出阶跃负载变化的情况下,控制系统也表现出良好的动态性能。

English Abstract

In all-electric airctaft, the Auxiliary Power Units (APU) based on fossil fuels are replaced by energy storage systems equipped with batteries or fuel cells. This paper proposes a novel 115Vrms, 400 Hz DC/AC converter for a 5 kW APU of a lightweight all-electric aircraft. The proposed DC/AC converter employs a Five-Level Cascaded H-Bridge (5-LCHB) supplied by a Triple-Active Bridge (TAB). The TAB allows the independent control of its two output ports while connected to a single electrochemical battery pack. The three-winding high-frequency transformer provides galvanic isolation, endowing reliability to the conversion system. The inherent decoupling condition established between the TAB output ports is modelled, and the proposed DC/AC converter design is assessed with a co-simulation study on PLECS and Matlab/Simulink. The proposed system has been experimentally validated on a scaled converter prototype. The results show that the TAB inherent decoupling condition is reached between the output ports achieving the proper implementation of the Selectvie Harmonic Elimination Pulse Active Width Modulation (SHE-PWM) in the 5-LCHB. Moreover, the control system exhibits good performance dynamics even under output step-load variations.
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SunView 深度解读

该新型双向DC-DC变换器与多端口架构技术对阳光电源储能与车载产品线具有重要借鉴价值。在ST系列储能变流器中,可借鉴其多端口拓扑实现电池簇级联管理,提升PowerTitan系统的模块化冗余设计和动态响应能力。其高功率密度与热管理优化方案可直接应用于车载OBC充电机的轻量化设计,满足新能源汽车对体积和效率的严苛要求。该变换器的双向能量管理策略可增强储能系统充放电控制精度,结合阳光电源现有的GFM构网控制技术,进一步提升系统可靠性。建议在功率模块设计中引入其集成化思路,优化SiC器件布局,降低寄生参数影响。