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Hybrid-mode interleaved boost converter design for fuel cell electric vehicles

机译:燃料电池电动汽车的混合模式交错式升压转换器设计

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For Fuel Cell Electric Vehicles, DC-DC power converters are essential to provide energy storage buffers between fuel cell stacks and the traction system because fuel cells show characteristics of low-voltage high-current output and wide output voltage variation. This paper presents a hybrid-mode two-phase interleaved boost converter for fuel cell electric vehicle application in order to improve the power density, minimize the input current ripple, and enhance the system efficiency. Two operation modes are adopted in the practical design: mode I and mode II are used with each boost converter operating in continuous conduction mode and discontinuous conduction mode. The operation, design and control of the interleaved boost converter for different operating modes are discussed with their equivalent circuits. The boundary conditions are distinguished with respect to switching duty ratio and load conditions. Transitions between continuous conduction mode and discontinuous conduction mode are illustrated for the whole duty ratio range. The expressions for inductor current ripple, input current ripple and output voltage ripple are derived and verified by simulation and experimental tests. The efficiency and power density improvements are illustrated to verify the effectiveness of the proposed design scheme. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于燃料电池电动汽车,DC-DC电源转换器对于在燃料电池堆和牵引系统之间提供储能缓冲器至关重要,因为燃料电池具有低压大电流输出和宽输出电压变化的特性。本文提出了一种用于燃料电池电动汽车的混合模式两相交错式升压转换器,以提高功率密度,最小化输入电流纹波并提高系统效率。在实际设计中采用两种工作模式:模式I和模式II用于每个升压转换器以连续导通模式和不连续导通模式工作。利用等效电路讨论了交错升压转换器在不同工作模式下的操作,设计和控制。边界条件在开关占空比和负载条件方面有所区别。对于整个占空比范围,示出了连续导电模式和不连续导电模式之间的过渡。通过仿真和实验测试推导并验证了电感器电流纹波,输入电流纹波和输出电压纹波的表达式。说明了效率和功率密度的提高,以验证所提出设计方案的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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