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PV/Wind Grid-Connected Prefabricated Cabin | Integrated Energy Hub
——Fast Deployment · Smart Management · Global Standards——
Core Features
Plug-and-Play Design: 70% faster installation with pre-tested modules (72-hour on-site setup).
Hybrid Compatibility: Supports solar, wind, and battery storage in a single unit.
Smart Control: IoT-enabled monitoring via Modbus/BACnet, real-time data analytics, and remote O&M.
Global Compliance: Meets IEC 61439, UL 508A, and GB/T standards.
Target Applications
Utility-Scale Projects: Solar farms, wind parks, and hybrid plants.
Industrial Zones: Factories, data centers, and microgrids.
Remote Areas: Off-grid communities and mining operations.
Why Choose Us?
Global Adaptation: Customized for ANSI, IEC, or GB configurations.
Cost Efficiency: 30% lower lifecycle costs with 25+ years lifespan.
24/7 Support: 50+ engineers worldwide, 15-day delivery guarantee.
Technical Deep Dive
1. Structure & Components
Component | Technical Highlights |
Power Conversion | 10kV/35kV transformer + 95% efficiency inverter, compatible with bifacial PV and 4MW turbines. |
Grid Interface | Dual-circuit switchgear with SF6/Vacuum breakers, 25kA fault current withstand. |
Battery Integration | Optional 500kWh-2MWh LiFePO4 storage, 1C charge/discharge rate. |
Control System | Dual-redundant PLC + SCADA, predictive maintenance via AI algorithms. |
Enclosure | IP54 stainless steel (outdoor) / IP32 galvanized (indoor), -40°C to +55°C operation. |
2. Technical Specifications
Parameter | Value | Standards |
Rated Voltage | 10kV/35kV (±20%) | IEC 60038, GB 3906 |
Continuous Current | 630A (switchgear), 125A (fuse) | IEC 62271-200 |
Efficiency | ≥95% (inverter), ≤1% harmonic distortion | IEEE 1547 |
Communication Protocols | Modbus TCP, IEC 61850, DNP3.0 | IEC 60870-5-104 |
3. Operation Workflow
Energy Harvesting: PV panels/wind turbines feed DC/AC power into the cabin.
Conversion & Storage: Inverter converts DC to AC; excess energy charges batteries.
Grid Synchronization: Smart relay adjusts voltage/frequency to match grid requirements.
Fault Handling: Automatic islanding detection and <100ms grid disconnection during outages.
4. Regional Customization
Region | Key Requirements | Our Solution |
North America | UL 508A, NEC 490, 60Hz compliance | NEMA 4X enclosure + UL-certified components |
Europe | CE/UKCA, EN 50588 | SF6-free design + RoHS compliance |
Middle East | 55掳C heat resistance, sandproof | Enhanced cooling + desert coating |
Asia-Pacific | GB/T 15576, THDi<8% | Harmonic filters + dual-language HMI |
5.Case Study: 50MW Solar-Wind Hybrid Plant (Chile)
Metric | Before | After | Improvement |
Deployment Time | 6 months | 8 weeks | 67% faster |
Energy Loss | 15% | 5% | 67% reduction |
ROI Period | — | 11 months | Cost recovery |
Global Services & Compliance
1. Certifications
CE, UL, IECEx, UKCA, ISO 9001/14001
2. Logistics & Support
- Delivery: 15 days (standard), 7 days (urgent) with pre-configured cables.
- Documentation: Multilingual manuals, IEC test reports, DoC.
- Training: Onsite safety and maintenance workshops.
3. Interactive Tools
1. ROI Calculator: Input local energy prices → Estimate payback period.
2. Compliance Wizard: Select country → Generate certification roadmap.
FAQ
Q1: Can it operate in -40°C environments?
A: Yes, with heated battery compartments and low-temp lubricants.
Q2: How to handle battery degradation?
A: AI predicts cell health, enabling proactive replacement (90% accuracy).
Q3: Is SF6 gas used?
A: Optional SF6-free design with vacuum interrupters (EU F-Gas compliant).
PV/Wind Grid-Connected Prefabricated Cabin | Integrated Energy Hub
——Fast Deployment · Smart Management · Global Standards——
Core Features
Plug-and-Play Design: 70% faster installation with pre-tested modules (72-hour on-site setup).
Hybrid Compatibility: Supports solar, wind, and battery storage in a single unit.
Smart Control: IoT-enabled monitoring via Modbus/BACnet, real-time data analytics, and remote O&M.
Global Compliance: Meets IEC 61439, UL 508A, and GB/T standards.
Target Applications
Utility-Scale Projects: Solar farms, wind parks, and hybrid plants.
Industrial Zones: Factories, data centers, and microgrids.
Remote Areas: Off-grid communities and mining operations.
Why Choose Us?
Global Adaptation: Customized for ANSI, IEC, or GB configurations.
Cost Efficiency: 30% lower lifecycle costs with 25+ years lifespan.
24/7 Support: 50+ engineers worldwide, 15-day delivery guarantee.
Technical Deep Dive
1. Structure & Components
Component | Technical Highlights |
Power Conversion | 10kV/35kV transformer + 95% efficiency inverter, compatible with bifacial PV and 4MW turbines. |
Grid Interface | Dual-circuit switchgear with SF6/Vacuum breakers, 25kA fault current withstand. |
Battery Integration | Optional 500kWh-2MWh LiFePO4 storage, 1C charge/discharge rate. |
Control System | Dual-redundant PLC + SCADA, predictive maintenance via AI algorithms. |
Enclosure | IP54 stainless steel (outdoor) / IP32 galvanized (indoor), -40°C to +55°C operation. |
2. Technical Specifications
Parameter | Value | Standards |
Rated Voltage | 10kV/35kV (±20%) | IEC 60038, GB 3906 |
Continuous Current | 630A (switchgear), 125A (fuse) | IEC 62271-200 |
Efficiency | ≥95% (inverter), ≤1% harmonic distortion | IEEE 1547 |
Communication Protocols | Modbus TCP, IEC 61850, DNP3.0 | IEC 60870-5-104 |
3. Operation Workflow
Energy Harvesting: PV panels/wind turbines feed DC/AC power into the cabin.
Conversion & Storage: Inverter converts DC to AC; excess energy charges batteries.
Grid Synchronization: Smart relay adjusts voltage/frequency to match grid requirements.
Fault Handling: Automatic islanding detection and <100ms grid disconnection during outages.
4. Regional Customization
Region | Key Requirements | Our Solution |
North America | UL 508A, NEC 490, 60Hz compliance | NEMA 4X enclosure + UL-certified components |
Europe | CE/UKCA, EN 50588 | SF6-free design + RoHS compliance |
Middle East | 55掳C heat resistance, sandproof | Enhanced cooling + desert coating |
Asia-Pacific | GB/T 15576, THDi<8% | Harmonic filters + dual-language HMI |
5.Case Study: 50MW Solar-Wind Hybrid Plant (Chile)
Metric | Before | After | Improvement |
Deployment Time | 6 months | 8 weeks | 67% faster |
Energy Loss | 15% | 5% | 67% reduction |
ROI Period | — | 11 months | Cost recovery |
Global Services & Compliance
1. Certifications
CE, UL, IECEx, UKCA, ISO 9001/14001
2. Logistics & Support
- Delivery: 15 days (standard), 7 days (urgent) with pre-configured cables.
- Documentation: Multilingual manuals, IEC test reports, DoC.
- Training: Onsite safety and maintenance workshops.
3. Interactive Tools
1. ROI Calculator: Input local energy prices → Estimate payback period.
2. Compliance Wizard: Select country → Generate certification roadmap.
FAQ
Q1: Can it operate in -40°C environments?
A: Yes, with heated battery compartments and low-temp lubricants.
Q2: How to handle battery degradation?
A: AI predicts cell health, enabling proactive replacement (90% accuracy).
Q3: Is SF6 gas used?
A: Optional SF6-free design with vacuum interrupters (EU F-Gas compliant).
| No.60, Binhai South Second Road, Economic Development Zone, Yueqing City, Zhejiang Province, China |
| +86-13505879225 |
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