Commercial & Industrial Cases

Nigeria ESS-GRID HV PACK with Deye Inverter 110kWh Energy Storage Solution for Off-Grid Island Project

Capacity

110 kWh

Inverter

Deye

Scenario

Nigeria / Banana Island

Project Introductions

Banana Island in Nigeria faces the challenge of intermittent power supply, making reliable energy solutions a high priority for both residential and commercial customers. With the growing demand for sustainable energy, combining solar power with energy storage technology has become critical. To meet this need, BSLSATT successfully installed a advanced energy storage system for the island, combining cutting-edge solar technology with a robust energy storage solution. The state-of-the-art installation utilises 2 BSLBATT HV PACKs and a 50kW Deye inverter to provide a total of 110kWh of reliable energy storage. Powered by a 44kWp photovoltaic system, the solution ensures clean, uninterrupted power for residential and commercial needs.

Product Descriptions

ESS-GRID HV PACK, with a capacity of 110kWh, is a high-voltage lithium iron phosphate battery system designed for residential, small business, and industrial solar energy storage. This system consists of two ESS-GRID HV PACK units and a 50kW Deye inverter, supported by a 44kWp solar array. Known for its modular design, the ESS-GRID system offers scalability and flexibility, ensuring optimal energy storage and efficiency. It features a high efficiency of conversion, minimal energy loss, and low maintenance, while the advanced BMS allows up to five packs to be connected in parallel, supporting a total storage capacity of up to 466kWh.

User Benefits

By installing the ESS-GRID HV PACK, Banana Island has experienced a significant improvement in power reliability. The system provides continuous, clean energy to both residential and commercial users, reducing reliance on the unstable local grid. The integration of solar power with efficient storage not only lowers electricity costs but also contributes to a more sustainable energy future. Moreover, the easy-to-maintain, flexible system allows for future expansion, enabling scalability to meet growing energy demands. The use of advanced cloud-based monitoring and remote system upgrades further enhances operational efficiency and ensures long-term reliability.