Photovoltaic energy harvesting for hybrid/electric vehicles: Topology comparison and optimisation of a discrete power stage for European Efficiency

M. Nikolic, H. Zimmermann
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引用次数: 5

Abstract

This paper presents a topology comparison of a hybrid low-voltage step-up dc-dc converter in terms of European Efficiency. Such converters are suited to be integrated with solar cells, thus forming a photovoltaic energy harvesting architecture dedicated for an integrated realisation of a solar range extender for electric vehicles. Except of a discrete power stage realisation, the rest of a system, such as control, time and power management, shall be monolithically integrated in the AMS 0.35μm HV CMOS process. Developed efficiency model allows straightforward comparison of different converter topologies, as shown on an example of the dc-dc converter which supplies the electric vehicle auxiliary board net (12 V) with photovoltaic power up to 40 W from a stack of 9-10 solar cells. Optimisation of the design variables: the external power switches, and the converter switching frequency is outlined on a given example.
混合动力/电动汽车的光伏能量收集:欧洲效率的离散功率阶段的拓扑比较和优化
本文从欧洲效率的角度对一种混合型低压升压dc-dc变换器进行了拓扑比较。这种转换器适合与太阳能电池集成,从而形成一个光伏能量收集架构,专门用于电动汽车的太阳能增程器的集成实现。除了分立功率级实现外,系统的其余部分,如控制、时间和电源管理,都应单片集成在AMS 0.35μm HV CMOS工艺中。所开发的效率模型可以直接比较不同的转换器拓扑结构,如图所示的dc-dc转换器示例,该转换器为电动汽车辅助板网(12 V)提供来自9-10个太阳能电池堆栈的高达40 W的光伏功率。优化的设计变量:外部电源开关,和转换器的开关频率概述了一个给定的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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