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双向无极性直流断路器临界负载电流优化设计与应用研究

Research on Optimal Design and Application of Critical Load Current for Bidirectional Non?polar DC Circuit Breaker

  • 摘要: 临界负载电流下的电弧停滞是制约双向无极性直流断路器开断性能的关键问题。基于Elenbaas-Heller电弧能量平衡模型,本文提出一种采用对称永磁体+导磁板组合结构的双向磁场增强方法。该方法通过导磁回路耦合的对向永磁体布局,优化磁路,使触头区域的纵向磁场强度提升86倍以上,从而显著增强了电弧驱动能力。本研究为高可靠性紧凑型直流断路器在光伏储能、分布式直流微电网等场景的应用提供了有效的技术途径。

     

    Abstract: Arc stagnation under critical load current is a key problem restricting the breaking performance of bidirectional non-polar DC circuit breakers. Based on the Elenbaas-Heller arc energy balance model, this paper proposes a bidirectional magnetic field enhancement method using a combined structure of symmetrical permanent magnets and magnetic conduction plates. This method optimizes the magnetic circuit through the layout of opposing permanent magnets coupled by a magnetic circuit, resulting in an increase of over 86 times in the longitudinal magnetic field strength within the contact region, thereby significantly enhancing the arc driving capability. This research provides an effective technical pathway for the application of highly reliable and compact DC circuit breakers in scenarios such as photovoltaic energy storage and distributed DC microgrids.

     

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