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Improved phase comparison distance protection for transmission lines of energy storage power stations based on polarization voltage phase reconstruction
  • +2
  • Haoyu Zhu,
  • Xiaoran Wang,
  • Chunju Fan,
  • Yan Hu,
  • Nengling Tai
Haoyu Zhu
Shanghai Jiaotong University
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Xiaoran Wang
Shanghai Jiao Tong University
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Chunju Fan
Shanghai Jiao Tong University
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Yan Hu
Shanghai Jiao Tong University

Corresponding Author:yanhu@sjtu.edu.cn

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Nengling Tai
Shanghai Jiao Tong University
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Abstract

Affected by the different fault characteristics of electrochemical energy storage power stations under charging and discharging operating states, the phase comparison distance protection using positive sequence voltage as polarization voltage may operate incorrectly if faults occur in the forward direction of the energy storage side protection and the reverse direction of the system side protection. Therefore, an improved distance protection scheme that can adapt to both charging and discharging states of is studied. Firstly, the fault characteristics of the energy storage station under different charging or discharging states are analyzed, and the influence mechanism of fault characteristics on phase comparison distance protection operation performance was discussed. On this basis, an improved scheme for distance protection based on polarization voltage phase reconstruction was proposed. Finally, verification was conducted on the PSCAD/EMTDC simulation platform. The simulation results show that the proposed scheme can effectively reduce the impact of fault characteristics of energy storage power stations. The sensitivity and reliability of phase comparison distance protection are effectively improved under different charging and discharging states and transition resistance conditions.
15 Aug 2025Submitted to IET Generation, Transmission & Distribution
19 Aug 2025Submission Checks Completed
19 Aug 2025Assigned to Editor
19 Aug 2025Review(s) Completed, Editorial Evaluation Pending
22 Aug 2025Reviewer(s) Assigned
13 Sep 2025Editorial Decision: Revise Major
08 Oct 20251st Revision Received
11 Oct 2025Submission Checks Completed
11 Oct 2025Assigned to Editor
11 Oct 2025Review(s) Completed, Editorial Evaluation Pending
11 Oct 2025Reviewer(s) Assigned
15 Dec 2025Editorial Decision: Revise Major
31 Dec 20252nd Revision Received
01 Jan 2026Submission Checks Completed
01 Jan 2026Assigned to Editor
01 Jan 2026Review(s) Completed, Editorial Evaluation Pending
01 Jan 2026Reviewer(s) Assigned
05 Jan 2026Editorial Decision: Accept