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Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
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Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
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Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops

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Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops
Journal Article

Performance Comparison of Grid-Forming Energy-type STATCOM in Mitigating Commutation Failures under Different Inner Loops

2026
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Overview
Grid-forming energy-type STATCOM (GFM ET-STATCOM) presents a promising alternative to synchronous condenser in mitigating commutation failures. In the paper, the fundamental mechanism of GFM ET-STATCOM in mitigating commutation failure considering the advanced firing control is firstly analyzed, revealing that GFM ET-STATCOM should fully inject the reactive current into the receiving-end grid to maximize its commutation failure mitigation capability. Then, following the fundamental mechanism, considering that GFM ET-STATCOM with different inner loops exhibits significant difference in the fault transient characteristics, the performance of GFM ET-STATCOM with different inner loops in mitigating commutation failure is compared, thereby providing the guideline for the practical design of GFM ET-STATCOM. Finally, based on PSCAD/EMTDC, the correctness of theoretical analysis is validated by the simulation results.
Publisher
IOP Publishing
Subject