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Maximum power extraction from a small wind turbine using 4-phase interleaved boost converter

机译:使用4相交织升压转换器的小型风力涡轮机的最大功率提取

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This paper describes a 4-phase interleaved boost converter in a small wind turbine application. The boost converter is placed between the wind turbine and the load and is controlled to extract the maximum power from wind turbine. The boost converter duty ratio adjusted, based on the wind speed and rotor speed values, so that the wind turbine would be operated at the optimum tip speed ratio (TSR). A field programmable gate array (FPGA) based digital control system is adopted for converter control, with discontinuous conduction mode (DCM) control strategy, so that it is not necessary to actively balance the current on each phase. The modeling of the wind turbine system as well as power converter is studied by simulating analysis in Matlab/Simulink, and the corresponding hardware is designed for validation. Both results show that the proposed system design has high energy conversion efficiency, with simple but reliable control strategy.
机译:本文描述了一种小型风力涡轮机应用中的4相交织升压转换器。升压转换器放置在风力涡轮机和负载之间,并控制以提取来自风力涡轮机的最大功率。基于风速和转子速度值调节升压转换器占空比,使得风力涡轮机将以最佳的尖端速比(TSR)操作。基于现场可编程门阵列(FPGA)的数字控制系统用于转换器控制,具有不连续的传导模式(DCM)控制策略,因此不必积极平衡每个阶段的电流。通过在MATLAB / SIMULINK中模拟分析来研究风力涡轮机系统以及功率转换器的建模,设计了相应的硬件验证。这两个结果表明,该系统设计具有高能量转换效率,具有简单但可靠的控制策略。

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