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An input-parallel and output-series-parallel phase-shift full-bridge converter with maximum power point tracking for wind turbine

机译:输入平行和输出串联平行相移全桥转换器,具有用于风力涡轮机的最大功率点跟踪

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This paper proposes a novel topology for a DC/DC conversion system, which consists of three phase-shift H-bridge converters. The three input sides of the H-bridge converters are paralleled directly, while the output sides can be connected in parallel and/or series through a switching mechanism, which provides nine different connection configurations determined by the value of the input voltage generated and rectified from a wind-turbine generator. Lower cut-in voltage can be achieved by connecting the output sides of the three H-bridge converters in series to obtain high voltage gain. When rated power of the wind turbine is reached, the generator provides highest voltage, the output sides of the three H-bridge connect in series to share the load current. Thus, the main aims of the proposed converter are to provide a wider available operation range of the wind turbine and to obtain higher efficiency of the converter system over the whole operation range. Nevertheless, using three individual converters with different rated power is cost inefficiency compared with working by one single converter, and this is a disadvantage of the proposed system. The well-known load-disturbance method is used to track the available maximum power generated from the wind turbine. A 5kW prototype was built for evaluation and test. The experimental results demonstrated the validity of the proposed converter.
机译:本文提出了一种用于DC / DC转换系统的新型拓扑,其包括三个相移H桥转换器。 H-Bridge转换器的三个输入侧直接平行,而输出侧可以通过切换机构并行连接和/或串联,其提供由产生的输入电压的值确定的九种不同的连接配置,从而提供风力涡轮发电机。通过串联连接三个H桥转换器的输出侧以获得高压增益,可以实现较低的切割电压。当达到风力涡轮机的额定功率时,发电机提供最高电压,三个H网桥的输出侧串联连接以共享负载电流。因此,所提出的转换器的主要目的是提供风力涡轮机的更广泛的可用操作范围,并在整个操作范围内获得变换器系统的更高效率。然而,与一个单一转换器的工作相比,使用具有不同额定功率的三个单独转换器是成本低效的,这是所提出的系统的缺点。众所周知的负载扰动方法用于跟踪风力涡轮机产生的可用最大功率。建立了5kW原型进行评估和测试。实验结果表明了所提出的转换器的有效性。

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