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Design-Oriented Analysis and Transient Control for VSG With Current Saturation Unit

delete2025-01-01
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PRE
AI
C
Cong Luo
陈燕东 cover
陈燕东 (Yandong Chen) *
廖
廖书寒 (Shuhan Liao)
王
王自力 (Zili Wang)
Z
Zhiwei Xie
练之洁 cover
练之洁 (Zhijie Lian)
DOI:10.1109/TPEL.2024.3476967delete
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Abstract

Abstract

En 中文
Under grid fault condition, virtual synchronous generator (VSG) is prone to transient instability due to the existence of current saturation unit (CSU), which has been extensively studied. However, the CSU in existing literatures is characterized by a fixed saturation angle, overlooking the impact of saturation angle on transient instability. To fill this gap, a design-oriented analysis for VSG with CSU is carried out to thoroughly reveal the impact of saturation angle. First, the large signal equivalent model of VSG with CSU is developed, and four types of transient behavior under different saturation angles are qualitatively analyzed to reveal the instability mechanism. Next, the stability boundary analysis is performed to quantitatively evaluate the impact, wherein the feasible region of saturation angle is obtained. The analysis indicates that improper saturation angle and loss of equilibrium point can induce transient angle instability. To limit fault current and guarantee transient angle stability simultaneously, a comprehensive transient control collaboratively adjusting saturation angle and reference power under different fault degree is proposed. The design of control parameters considering voltage support and power transmission is presented. Finally, simulation and experimental tests validate the correctness of theoretical analysis and effectiveness of proposed control.
Keywords:
Transient analysis
Power system stability
Stability criteria
Voltage control
Fault currents
Analytical models
Vectors
Thermal stability
Impedance
Resistance
Current saturation unit (CSU)
fault current
transient angle stability
virtual synchronous generator (VSG)

Journal

IEEE Transactions on Power Electronics cover
IEEE Transactions on Power Electronics
IF:
6.5
Papers:
1.7W
Citations:
8.3W

Organization

H
Hunan First Normal University
Scholars:
448
Papers: 494
Citations: 579
H
hunan university
Scholars:
4.5W
Papers: 3.3W
Citations: 70
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