典型接地故障检测方法在非隔离型柔性互联配电网中的适应性分析
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TM727.2;TM771

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国家重点研发计划资助项目(2023YFB2407400)


Adaptability analysis of typical grounding fault detection methods in non-isolated flexible interconnected distribution networks
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    摘要:

    文中以非隔离型柔性互联配电网为研究对象,针对交流系统发生单相接地故障时,因零序分量传递特性导致的典型接地故障检测方法适应性问题开展研究。首先,建立非隔离型智能软开关(soft open point, SOP)的零序等值拓扑网络,提出零序分量的传递方程并定量分析零序分量传递至非故障侧的大小,分析不同场景下零序分量抑制效果;然后,分别对小电流互联系统、小电阻互联系统、小电流和小电阻互联系统的典型保护进行适应性分析,结果表明,在非隔离型柔性互联系统中,零序分量传递至系统健全侧后保护可能发生误动或误告警;最后,基于PSCAD建立典型非隔离型柔性互联配电网模型,对不同互联系统的保护适应性分析进行验证。文中研究结论可为非隔离型柔性互联配电网的保护配置提供理论支撑。

    Abstract:

    Non-isolated flexible interconnected distribution networks as the research object are explored, focusing on the adaptability issue of typical grounding fault detection methods when single-phase grounding faults occur in AC systems due to zero-sequence transfer characteristics. Firstly, The zero-sequence equivalent topology network for non-isolated soft open point (SOP) is established, with transmission equations for zero-sequence components proposed to quantitatively analyzed their magnitude when transmitted to the non-fault side. The suppression effects of zero-sequence components are evaluated in various scenarios. Then, an adaptability analysis of typical protections is conducted for interconnected systems with low-current, low-resistance connections and hybrid low-current/low-resistance grounding methods. Results show that in non-isolated flexible interconnected systems, zero-sequence components transmission to the healthy side may cause protection maloperation or false alarms. Finally, a typical non-isolated flexible interconnected distribution network model is established in PSCAD to verify the adaptability analysis of protections in different interconnected systems, and the theoretical analysis is confirmed to be correct. The findings provide a theoretical basis for protection configuration in non-isolated flexible interconnected distribution networks.

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张贺铭,常仲学,陈实,王晨清,袁宇波,宋国兵.典型接地故障检测方法在非隔离型柔性互联配电网中的适应性分析[J].电力工程技术,2025,44(4):14-22

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  • 收稿日期:2025-02-28
  • 最后修改日期:2025-05-09
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  • 在线发布日期: 2025-08-01
  • 出版日期: 2025-07-28
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