
Ⅰ. Mga Pangunahing Puntos para sa Pag-upgrade ng System Architecture ng Medium Voltage Switchgear
|
Uri ng Monitoring |
Teknolohikal na Breakthrough (sa Medium Voltage Switchgear) |
|
Electrical Parameters |
Deployment ng non-invasive wireless sensing terminals (halimbawa, PG-C10), na sumusuporta sa pagsukat ng current mula 5A-400A na may 0.5% na katumpakan. |
|
Mechanical Status |
Paggamit ng infrared displacement sensors + vibration analysis algorithms upang monitorein ang pagbabago ng bilis ng pagbubukas/pagsasara nang ±0.1ms. |
|
Insulation Aging |
Pagsasama ng high-sensitivity partial discharge (PD) sensors (pC level) + AI diagnostic system para sa PRPD patterns. |
Ⅱ. Malalim na Optimisasyon ng Predictive Maintenance Models para sa Medium Voltage Switchgear
Ⅲ. Innovations sa Digital Twin at Remote Operation para sa Medium Voltage Switchgear
Ⅳ. Industry-Specific Solutions para sa Medium Voltage Switchgear
|
Scenario |
MVS Technical Adaptation |
Case Benefits |
|
Data Centers |
Millisecond-level fault isolation + Dual-bus redundancy sa MVS |
Taunang downtime ≤ 3 minutes |
|
Offshore Platforms |
Anti-corrosion coating + Wireless sensor network para sa MVS, na nakakaresist sa salt spray corrosion |
Maintenance costs ↓ 45% |
|
PV Power Plants |
Bidirectional power flow control + Harmonic suppression algorithms sa MVS |
Energy losses ↓ 15% |
|
Rail Transit |
Vibration/impact protection + 24/7 status tracking para sa MVS |
Fault response speed ↑ 70% |
Ⅴ. Quantifying Sustainable Value ng Medium Voltage Switchgear