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Domestic Digital High-Protection Ring Main Unit
Applications

Actively serving the State Grid's "dual carbon" process and accelerating the digital transformation of the grid, Dongfang Electronics Corporation has innovatively proposed a digital station terminal architecture and high-protection design for ring main units, launching a domestic digital high-protection environmentally friendly gas-insulated ring main unit. This utilizes local digital technology to enhance the reliability, compactness, and green low-carbon features of the ring main unit. The digital terminal adopts a domestic hardware and software platform, with the main control unit equipped with an 8-inch color touch screen, and the digital sensing unit being CPU-free and maintenance-free. It features 5G-based differential protection and intelligent distributed functions, fiber-based differential protection, and a self-developed adaptive strategy for small current grounding fault detection, with a single-phase grounding fault judgment accuracy exceeding 90%.

System Composition



Functional Features
  • Digital "Plus" Support
    Low-carbon digital products: The digital architecture reduces carbon emissions, with 6-loop digital looped network cabinet cables reducing usage by 36% compared to standardized centralized systems and by 48% compared to decentralized systems. Insulation employs eco-friendly gas without pollution. New power system: Equipped with 5G and fiber-optic distribution network longitudinal differential protection; directional intelligent distributed FA; source-grid management; AGC/AVC; power quality and photovoltaic grid integration management.
  • Simplify Complexity into "Reduction"
    Intelligent O&M: 8-inch touchscreen LCD, one-click topology query, handheld device operation eliminates O&M computers. Main control unit program parameters self-upgrade via TF card. Sensor units are CPU-free, plug-and-play and maintenance-free. Holistic sensing: State monitoring of circuit breaker internal components (closing circuit/tripping, energy storage mechanism, outlet pressure plate, etc.), lifespan prediction and early warning via characteristic current signals for refined management.
  • Achieve "Multiplied" Effectiveness
    Independently controllable: Both the terminal hardware and software platforms are fully localized. Achievements: Distribution network fiber-optic differential protection with restoration; 12.8 kHz high-speed sampling improves grounding fault judgment accuracy. ΔI_PAM phase asymmetry principle: When transition resistance is 12 kΩ, grounding line selection accuracy is >95%. Field operations in Binzhou, Shandong, obtained distribution network restoration differential protection KEMA test report and type test report.
  • Overcome Obstacles with "Division"
    Strong weather resistance: Terminals meet IP65 protection, current transformers and operating mechanisms meet IP67 protection, waterproof and moisture-proof. Inter-device connections via lockable aviation plugs are stable and reliable. The cabinet withstands 1m water immersion with reliable operation.
Cases