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Sliding mode controller based quadratic boost converter for fuel cell system

机译:基于滑模控制器的二次升压转换器,用于燃料电池系统

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Electric vehicle provides better performance in comparison of an Internal Combustion engine based vehicle. Conventionally, application of FC is as primary source of energy in electric vehicle as it provides better efficient and pollution free source of energy, unfortunately FC has slow dynamics response. As FC continues supplies power to load so control technique for FC system is required. For boosting output voltage of FC a power converter should be designed to meet some requirements such as regulated DC bus voltage and asymptotic stability of system. Switching frequency of conventional boost converter is limited which results reduction in voltage profile of dc bus, so for eliminating problem of switching frequency components of two boost converters are combined using a single switch, new converter is termed as quadratic boost converter. This will improve switching frequency and output voltage of boost converter. This paper presents control technique for boosting output voltage of FC using a quadratic boost converter and for controlling DC bus voltage under load variation condition sliding mode controller is used.
机译:与基于内燃机的汽车相比,电动汽车具有更好的性能。传统上,FC的应用是电动汽车的主要能源,因为它提供了更好的效率和无污染的能源,但不幸的是,FC的动力学响应较慢。随着FC继续为负载供电,因此需要FC系统的控制技术。为了提高FC的输出电压,应设计功率转换器以满足某些要求,例如调节的直流母线电压和系统的渐近稳定性。传统升压转换器的开关频率受到限制,导致直流母线电压分布降低,因此,为消除使用单个开关将两个升压转换器的开关频率分量组合在一起的问题,新转换器被称为二次升压转换器。这将提高升压转换器的开关频率和输出电压。本文提出了一种使用二次升压转换器升压FC输出电压并在负载变化条件下使用滑模控制器来控制DC总线电压的控制技术。

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