Guangzhou Anern Energy Technology Co., Ltd.

Case Study: Deployment of 50 Anern 10.2kW Off-Grid Solar Systems for Residential Use in Ukraine

Project Summary

Location: Ukraine

System Type: Residential Off-Grid Solar System

Capacity: 10.2kW

Quantity: 50 Systems

Application: Household power supply during grid outages

anern 10.2kw off-grid solar system

anern 10.2kw off-grid solar power system with lithium battery & high efficiency solar inverter



Project Overview

In 2024, Anern deployed 50 sets of 10.2kW off grid solar power generation systems for residential households in Ukraine. These systems are installed and distributed through authorized local agents, targeting areas affected by unstable power grids and frequent power outages. The project aims to provide reliable and independent power supply for households, even in the event of long-term power grid disruptions, to provide basic and sustained electricity for daily life.

System Configuration

Each 10.2kW off grid solar energy system includes the following core components:


Key Performance

Some areas in Ukraine often experience power outages. The off grid design of the 10.2kW system allows households to operate independently of the public power grid, ensuring continuous power supply during power outages.


  • Energy Independence: The off-grid solar system operates independently from the public grid, allowing households to maintain power supply during power outages and grid failures.

  • System monitoring and daily operations: The integrated intelligent monitoring system enables users to track power generation, consumption, and battery status through mobile applications, simplifying daily operations and reducing maintenance complexity.

  • Family load support: The rated output power of the system is 10.2 kW, supporting common household appliances such as lighting, cooling, communication equipment, and basic equipment.

  • Climate adaptability: The design of this system component can operate reliably under Ukraine's seasonal climate conditions, including cold winters and temperature fluctuations.


The operational feedback collected from residential users indicates that these systems provide stable performance and reliable power supply during grid outages. User reports indicate that their confidence in daily power access and system monitoring has increased through the integrated control interface.


Conclusion

This project showcases the application of Anern's 10.2kW off grid solar system in real residential environments, solving energy reliability challenges by integrating solar power generation and battery storage. This deployment highlights how off grid solar solutions can support home energy independence in areas affected by grid instability.

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