A Review of Current-Limiting Control of Grid-Forming Inverters Under Symmetrical Disturbances
Обзор управления ограничением тока в инверторах, формирующих сеть, при симметричных возмущениях
2022-01-01
SCID: 54.1/xjxx4r48
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current-limiting controlfault current contributiongrid-forming inverterssymmetrical disturbancesvirtual impedance
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Abstract (AI)
Grid-forming (GFM) inverters are recognized as a viable solution to increase the penetration of renewable energy in bulk power systems. However, they are physically different from synchronous generators in terms of overcurrent capability. To protect the power semiconductor devices and support the power grid under severe symmetrical disturbances, the GFM control systems should be able to achieve the following requirements: current magnitude limitation, fault current contribution, and fault recovery capability. Various current-limiting control methods are reported in the literature to fulfill these goals, including current limiters, virtual impedance, and voltage limiters. This paper presents an overview of those methods. Emerging challenges that need to be addressed, including temporary overcurrent, unspecified output current vector angle, undesired current saturation, and transient overvoltage, are pointed out. Comparative simulations are conducted to demonstrate the performance of different methods under grid voltage drops and phase jumps. Finally, open issues of current-limiting control methods for GFM inverters, including transient stability assessment, voltage source behavior under overcurrent conditions, and windup of voltage controllers, are shared.
Key Findings
1
Effective control under severe symmetrical disturbances must simultaneously limit current magnitude, provide fault-current contribution, and enable fault recovery.
2
Grid-forming inverters require specialized current-limiting controls because their semiconductor devices have substantially lower overcurrent capability than synchronous generators.
3
Open research issues include transient-stability assessment, preserving voltage-source behavior during overcurrent, and preventing voltage-controller windup.
4
Reported challenges include temporary overcurrent, unspecified output-current-vector angle, undesirable current saturation, and transient overvoltage.
5
The review categorizes current-limiting approaches into current limiters, virtual impedance methods, and voltage limiters, and compares their behavior under grid-voltage drops and phase jumps.
Research Object
grid-forming (GFM) inverters under symmetrical disturbances
Research Subject
current-limiting control performance, including current magnitude limitation, fault-current contribution, fault recovery, and associated challenges
Publication Details
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2022-01-01
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