On-grid Pv Power Generator



With the significant reduction in the costs of PV modules and advancements in inverter technology, on-grid PV power generation for domestic and commercial applications has become practical and economically viable. Dayliff offers unbeatable PV systems by utilizing effective system controllers and the latest technology inverters from SMA. These systems synchronize the PV power output with the mains grid power supply, creating an efficient hybrid system that directly utilizes all the PV power generated while supplementing the network requirement from the grid. Here are some applications where these PV systems can be utilized:

1. Residential Installations: On-grid PV systems are ideal for residential buildings. They allow homeowners to generate their own electricity from solar power, reducing their reliance on the grid and lowering electricity bills. These systems can power household appliances, lighting, and other electrical devices, providing a sustainable and cost-effective energy solution.

2. Commercial Buildings: On-grid PV systems can be installed in various commercial establishments, including offices, shops, or factories. These systems help offset the electricity consumption of the business, reducing operational costs and promoting environmental sustainability.

3. Schools and Educational Institutions: On-grid PV systems are applicable in schools, colleges, and universities. They can generate clean energy to power classrooms, labs, and administrative areas, providing educational institutions with a sustainable energy solution and promoting environmental awareness among students and staff.

4. Hotels and Hospitality Industry: On-grid PV systems can be utilized in hotels, resorts, or guesthouses. They can generate solar power to meet the energy demands of guest rooms, common areas, swimming pools, and other facilities, reducing energy costs and demonstrating a commitment to sustainable practices.

5. Industrial Applications: On-grid PV systems can be integrated into various industrial applications, such as manufacturing plants or warehouses. They can offset the electricity consumption of machinery, equipment, and lighting systems, reducing operational costs and carbon footprint.

6. Public and Government Buildings: On-grid PV systems can be installed in public buildings, government offices, or community centers. They provide a renewable energy solution, reducing energy costs and contributing to sustainable development goals.

7. Community Solar Projects: On-grid PV systems can be implemented as part of community solar projects, where multiple participants share the benefits of a solar power installation. These projects promote local energy production, community engagement, and renewable energy adoption.

8. Solar Farms: On-grid PV systems can be deployed in large-scale solar farms, generating significant amounts of renewable energy to be fed into the grid. These solar farms contribute to overall grid stability and help meet the growing demand for clean energy.

These applications demonstrate the versatility and economic viability of on-grid PV systems in various residential, commercial, and industrial settings. By utilizing effective system controllers and the latest inverter technology, these systems provide efficient and sustainable power generation by harnessing the sun's energy and synchronizing it with the mains grid supply.

EQUIPMENT SPECIFICATION

Model Name Array Size(STC)  Average Daily Output  Panels  Panel Area Grid Tie Inverter Rated Power Frequency / Rated Grid Voltage
Dayliff 3kW Grid Connect 4kWp 20kWh 12No, 335W  23m² SUN3KTL-L1 50Hz/230V
Dayliff 5kW Grid Connect 7kWp 34kWh 20No, 335W  39m² SUN5KTL-M1 50Hz/415V
Dayliff 10kW Grid Connect 13kWp 67kWh 40No, 335W  78m² SUN10KTL-M1
Dayliff 15kW Grid Connect 20kWp 100kWh 60No, 335W  117m² SUN15KTL-M2
Dayliff 20kW Grid Connect 27kWp 134kWh 80No, 335W  156m² SUN20KTL-M3
Dayliff 50kW Grid Connect 67kWp 335kWh 200No, 335W  389m² SUN50KTL-M0
Dayliff 100kW Grid Connect 134kWp 670kWh 400No, 335W  778M² SUN100KTL-M0

* Daily output will flactuate and be determined by the prevailing radiation levels

 

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