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首页> 外文期刊>Industrial and organizational psychology >Decentralised non-linear I-V droop control to improve current sharing and voltage restoration in DCNG clusters
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Decentralised non-linear I-V droop control to improve current sharing and voltage restoration in DCNG clusters

机译:分散的非线性I-V下垂控制,以改善DCNG集群中的电流共享和电压恢复

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摘要

This study proposes a new decentralised non-linear I-V droop control to achieve current sharing and voltage restoration for paralleled DC nanogrids (DCNGs) in a cluster. The performance of the conventional droop methods in current sharing among parallel converters degrades due to line impedances. The proposed method improves current sharing among the DCNGs with parallel-connected converters by considering the effect of line impedance, which is an important issue in practical applications. By the proposed method, desired current sharing from the light-load to heavy-load condition is achieved. Since only local information (the output voltage and output current of the DCNGs) is used, the proposed method is fully decentralised, and no communication infrastructure is required, which improves the reliability and stability of the overall system. Furthermore, Lyapunov stability theory is applied to investigate the stability of the proposed method. Additionally, the plug-and-play feature is achieved as an important desired functionality in the DCNGs as well as the proposed method provides scalability and modularity for the DCNGs in a cluster. In the end, theoretical analysis and experimental results validate the effectiveness of the proposed control framework for different scenarios.
机译:本研究提出了一种新的分散的非线性I-V下垂控制,以实现集群中的并联DC纳米格栅(DCNG)的电流共享和电压恢复。在并联转换器之间的电流共享中的传统下垂方法的性能因线路阻抗而劣化。通过考虑线阻抗的效果,所提出的方法通过考虑线阻抗的效果来改善与并联的转换器的DCNG之间的电流共享,这是实际应用中的一个重要问题。通过所提出的方法,实现了从光负荷到重载条件的所需电流。由于仅使用局部信息(DCNG的输出电压和输出电流),所提出的方法完全分散,因此不需要通信基础设施,这提高了整个系统的可靠性和稳定性。此外,利用Lyapunov稳定性理论用于研究所提出的方法的稳定性。另外,即插即用功能是在DCNG中的重要期望的功能中实现的,并且所提出的方法为群集中的DCNG提供可扩展性和模块化。最终,理论分析和实验结果验证了不同场景所提出的控制框架的有效性。

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