从暂态稳定性角度对成网逆变器限流算法的理论比较

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Dai Orihara;Hisao Taoka;Hiroshi Kikusato;Jun Hashimoto;Kenji Otani;Rahman Khaliqur;Ustun Taha Selim
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引用次数: 0

摘要

电网形成(GFM)逆变器使基于逆变器的资源充当电压源,为电力系统提供支持。预计它们将成为一种能够取代同步发电机的技术。然而,在故障期间,实现限制输出电流的功能以防止短路电流超过其容量是至关重要的。这引起了人们对电力系统暂态稳定性潜在恶化的担忧。限流对暂态稳定性的影响取决于限流方法。然而,目前还缺乏全面的理论评价。本文从理论上评价了各种限流算法中限流对暂态稳定性的影响。据此,提出了等效虚拟阻抗(EVI)作为通用度量。EVI表示GFM控制中模拟的电压源与逆变器连接点之间的虚拟阻抗,通过计算使通过EVI的电流与限制输出电流匹配。然后根据EVI的电路特性,评估了各种限流算法的暂态稳定性。最后,通过时域仿真对评估结果的一致性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Comparison of Current Limiting Algorithms in Grid-Forming Inverter in Terms of Transient Stability
Grid-forming (GFM) inverters enable inverter-based resources to act as voltage sources, providing support to power systems. They are anticipated to serve as a technology capable of replacing synchronous generators. However, during a fault, it is crucial to implement a function that limits their output current to prevent short circuit currents from exceeding their capacity. This raises concerns about the potential deterioration of transient stability in the power system. The influence of current limiting on transient stability depends on the current-limiting methodology. However, comprehensive theoretical evaluations are still lacking. This paper presents the theoretical evaluation of the influence of current limiting on transient stability for various current limitation algorithms. Accordingly, an equivalent virtual impedance (EVI) is proposed as a universal metric. EVI represents an impedance virtually assumed between the voltage source simulated in GFM control and the connection point of the inverter, and is computed so that the current through the EVI matches the limited output current. The transient stability is then assessed for various current-limiting algorithms based on the electric circuit characteristic of EVI. Finally, time-domain simulation is conducted to evaluate the consistency of the assessment.
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来源期刊
CiteScore
8.60
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