A professional solution provider for industrial energy storage and electric vehicle charging piles
12
+years of experience in ESS
31,600
m²industrial park
25,000
m²manufacturing plant
With the ongoing transformation of the global energy structure and rising electricity costs, commercial and industrial users have an increasingly urgent need for efficient and flexible inverter systems. Traditional models are often too bulky, poorly integrated, and lack multi-source coordination.
Our ATESS HPS100000TL hybrid inverter is specifically engineered to address these core challenges, delivering highly reliable power protection for small and medium-sized commercial applications.
With the rapid development of global renewable energy and energy storage technologies, Battery Energy Storage Systems (BESS) in containers have been widely applied in areas such as grid peak shaving, microgrids, and industrial-commercial energy storage. However, the risk of thermal runaway in lithium batteries makes fire protection systems a critical safeguard for energy storage safety. This white paper delves into the design principles, key technologies, and industry standards for fire protection systems in energy storage containers.
In today's rapidly evolving energy storage industry, the PCS (Power Conversion System), as the core component connecting batteries to the grid, directly impacts the efficiency, safety, and economic viability of the entire system. As photovoltaic and energy storage systems advance toward higher voltages and larger capacities, high-voltage PCS has emerged as a new industry trend. So, what advantages does high-voltage PCS offer compared to traditional low-voltage versions?
The Ibaragun and Robiyan communities in Ogun State, Nigeria, has long faced the challenge of unreliable electricity, limiting economic growth and access to essential services. In response to this energy gap, ATESS, in collaboration with local Nigerian partners and organizations, contributed to the completion of a cutting-edge 1MW solar mini-grid system, integrating advanced ATESS energy storage solutions to maximize efficiency, stability, and sustainability.
In modern energy management, the stability and reliability of the power grid are of paramount importance. When abnormalities occur in the main grid, maintaining uninterrupted operation during the transition to microgrid mode is a pivotal challenge in the field of energy technology.
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