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Hybrid current control of three-phase grid-connected converter for marine current power generation system

机译:船用发电系统三相并网变流器的混合电流控制

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This paper aims to analyze the applied hybrid controlled three-phase grid-connected inverter for marine current power generation system used in distributed generation. As inverter is a key part of the grid-based system, grid-connected technology plays an important role in the distributed generation to meet the stricter grid interconnection standards. In order to improve the power quality and strengthen the stability and reliability of the grid-based system, a hybrid control scheme based on PI control and repetitive control (RC) implemented in the synchronous reference frame (SRF) is presented by feeding back the inverter side current. In addition, this paper gives an analysis of stability, steady-state tracking error, and dynamic response respectively in frequency domain and time domain. Consequently, hybrid control scheme shows better dynamic response and can effectively eliminate the harmonics of output currents in theory. Finally, a 3 kW experimental prototype of three-phase CC-VSI is established on dSPACE5202 real-time platform to evaluate the performance of the proposed control scheme.
机译:本文旨在分析应用于分布式发电的船用发电系统的混合控制三相并网逆变器的应用。由于逆变器是基于电网的系统的关键部分,因此并网技术在分布式发电中扮演着重要角色,以满足更严格的电网互连标准。为了提高电能质量,增强电网系统的稳定性和可靠性,通过反馈逆变器,提出了一种在同步参考系(SRF)中实现的基于PI控制和重复控制(RC)的混合控制方案。侧电流。此外,本文分别分析了频域和时域的稳定性,稳态跟踪误差和动态响应。因此,从理论上讲,混合控制方案具有更好的动态响应,并且可以有效消除输出电流的谐波。最后,在dSPACE5202实时平台上建立了一个3 kW三相CC-VSI的实验原型,以评估所提出的控制方案的性能。

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