Your current location: Home > Dispatch and Cloud-Based Architecture > Transmission-Distribution Coordination Fault Diagnosis and Self-Healing Control System
Transmission-Distribution Coordination Fault Diagnosis and Self-Healing Control System
Applications

The transmission-distribution coordination fault diagnosis and self-healing control system resolves large-scale, prolonged feeder load outages during transmission network faults through comprehensive element coordination. By systematically analyzing distribution network operation data, it implements feeder load transfer for transmission network faults, provides multiple feeder transfer options, automatically selects optimal schemes, enhances transmission network fault transfer capability, and reduces operational risks.

System Composition

The transmission-distribution coordination self-healing system accurately detects anticipated faults and equipment failures, automatically and rapidly generates effective risk control strategies for the transmission or distribution network, reduces potential load loss, and enhances grid operation safety. When a grid fault occurs, the transmission network self-healing system collaborates with the distribution network self-healing module to calculate and provide optimized control strategies, restore power loss loads, and minimize outage duration. Multiple measures can improve the economic efficiency of grid operation.



Functional Features
  • Scheme Reconfiguration
    Real-time monitoring of transmission network transformers, lines, and stability sections for current overloads and future overload predictions, fully utilizing the self-healing capabilities of the transmission and distribution networks to provide overload elimination solutions.
  • Rapid Power Restoration
    Applicable to rapid power restoration in abnormal or fault conditions across all grid levels, significantly reducing fault duration.
  • Transmission-Distribution Coordination
    In cases of transmission network faults or large-scale power outages, analyze the entire grid topology and distribution network structure to output feasible power restoration paths for maximizing self-healing strategies.