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Adaptive Multi-Mode Power Control of a Direct-Drive PM Wind Generation System in a Microgrid

机译:微电网中直驱永磁风力发电系统的自适应多模式功率控制

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This paper presents an adaptive multi-mode power control algorithm for the converter of a direct-drive permanent magnetic wind generation system in a microgrid. The strategy is implemented in a field-oriented control machine drive system, with a two-level IGBT full-power rated ac–dc machine-side converter shown in Fig. 1. The objective of this paper control is to operate the wind generation either in maximum power point tracking (MPPT) mode or non-MPPT mode with enhanced tracking performance. The simulation proves that the proposed MPPT algorithm is faster, more robust, and adaptive to changes of the environment than the conventional variable-step hill climbing search algorithm, while the non-MPPT module has a fast dynamic response to the change of the power command and the environment, and an accurate steady-state response as well. Moreover, the result shows that the control strategy can automatically switch between the MPPT and non-MPPT modes.
机译:本文提出了一种适用于微电网中直接驱动永磁风力发电系统的变流器的自适应多模式功率控制算法。该策略在现场控制的机器驱动系统中实现,其两级IGBT全功率额定AC-DC机器侧转换器如图1所示。该纸控制的目的是控制风力发电在最大功率点跟踪(MPPT)模式或非MPPT模式下具有增强的跟踪性能。仿真表明,与传统的变步爬山搜索算法相比,所提出的MPPT算法具有更快,更鲁棒的适应环境变化的能力,而非MPPT模块对功率指令的变化具有快速的动态响应。环境,以及准确的稳态响应。此外,结果表明,该控制策略可以在MPPT模式和非MPPT模式之间自动切换。

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