利用虚拟元件设计增强电网跟随逆变器的宽带失散性

Zhiqing Yang;Wei Wu;Helong Li;Lijian Ding;Shan He;Frede Blaabjerg
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引用次数: 0

摘要

消散性为预测系统稳定性提供了一种便捷的方法,它从阻尼的角度解释了诱导共振。为了缓解潜在的共振并提高稳定性,本研究提出了一种在宽频率范围内提高电网跟随逆变器耗散性的设计方法。基于 dq 域导纳,研究了不同控制回路和时间延迟对频域耗散率的影响。通过设计虚拟元件,可以灵活地提高不同频率的耗散率。还提出了一种基于模型的设计准则,以便按照基于模型的方法调整控制参数。该设计方法适用于大功率逆变器系统。该方法还通过一个缩小的原型验证了其有效性,包括模拟、实验和耗散分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wideband Dissipativity Enhancement of Grid-Following Inverters Using Virtual Element Design
Dissipativity provides a convenient approach to predict system stability, which explains the induced resonances from the perspective of damping. To mitigate potential resonances and improve stability, this work presents a design method to enhance the dissipativity of grid-following inverters over a wide frequency range. Based on the dq-domain admittances, the frequency-domain dissipativity affected by different control loops and the time delay are investigated. By designing virtual elements, the dissipativity in different frequencies can be flexibly enhanced. A model-based design criterion is proposed to tune the control parameters following a model-based approach. The design method is presented for a high-power inverter system. The effectiveness of the method is also proved with a down-scaled prototype, which includes simulations, experiments, and dissipativity analysis.
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CiteScore
8.80
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