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Active resonance damping and harmonics compensation in distributed generation based islanded microgrids

机译:分布式基于岛状微电网的主动共振阻尼及谐波补偿

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摘要

The development of distributed generation based microgrids with high penetration of electronically interfaced systems shows great interest in various applications. These systems commonly use LC-L filters with inherent resonance characteristics, which increases the risk of resonance amplification and propagation in microgrids. These resonances lead to current and voltage harmonics amplifications resulting in major power quality and stability issues. For this aim, an effective active resonance damping method is proposed to dampen out the undesired resonance amplifications. The proposed method uses a filter-based approach with inherent stability characteristics to reconstruct and compensate for the undesired resonance harmonics. This method uses an external control level that prevents control bandwidth limitation as it directly superposes the harmonic compensating signal to the control signal. This method offers simplicity of design and implementation without the need for additional measurements or prior knowledge of system parameters, which is of importance in scalable microgrid applications. Experimental results and discussions are provided to evaluate the effectiveness of the proposed strategy.
机译:具有高渗透的基于微电网的显微渗透系统的开发对各种应用具有很大的兴趣。这些系统通常使用具有固有共振特性的LC-L滤波器,这增加了微电网中共振放大和传播的风险。这些共振导致电流和电压谐波扩增导致主要的电能质量和稳定性问题。为此目的,提出了一种有效的主动共振阻尼方法来抑制不希望的共振扩增。该方法采用基于滤波器的方法,具有固有的稳定性特性来重建和补偿不希望的共振谐波。该方法使用外部控制电平,防止控制带宽限制,因为它直接叠加到控制信号的谐波补偿信号。该方法提供了简单的设计和实现,而无需额外的测量或系统参数的先验知识,这在可伸缩的微电网应用中具有重要性。提供实验结果和讨论,以评估拟议策略的有效性。

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