
Driven by the in-depth advancement of the Dual Carbon Goals, the new energy vehicle industry is booming. Its retail penetration rate is expected to exceed 55% in 2025. However, a key bottleneck restricting its development lies in the supply-demand imbalance of charging infrastructure. Constrained by limited grid access, difficulties in high-voltage capacity expansion, scarce on-site space resources, single revenue models and other challenges, the construction of traditional charging stations has hit a ceiling. Equipping charging stations with energy storage is evolving into a “rigid demand”. Compared with conventional separated storage and charging solutions, LISINER is vigorously rolling out innovative integrated solutions and has developed this multi-site energy storage & charging integrated project.
Compared with the widely adopted separated storage and charging solutions, LISINER’s energy storage & charging integrated solution boasts distinctive innovative advantages.
Space Intensification
Adopting a highly integrated design concept, the solution effectively reduces equipment footprint. For upgrading demands of existing and aging stations, capacity expansion can be realized based on original parking bays and transformers. For construction in space-scarce urban CBD areas, medium and small fast-charging stations can be built rapidly.
Efficient Energy Supplementation
The LISINER integrated storage-charging equipment deployed in the project raises energy storage capacity to 100kWh, guaranteeing capacity support for charging piles. It can easily cope with peak power demand at charging stations and enable intelligent charge-discharge management. Equipped with a dual-gun fast-charging design, it can simultaneously meet the rapid charging demands of two new energy vehicles, delivering a driving range of 200 kilometers with just 20 minutes of charging.
Intelligent Operation & Maintenance
Equipped with a self-developed digital-intelligent platform driven by dual cores of AI and big data, the complete solution forms a multi-site aggregated intelligent microgrid. It enables full-lifecycle tracking and management of equipment, collects data from each node in real time, and intelligently optimizes operation strategies to satisfy demands including peak shaving & valley filling, remote operation and maintenance, safety management, intelligent forecasting, and multi-energy complementation.
Centered on Hangzhou, this multi-site energy storage & charging integrated project leverages the city’s vitality and resource advantages to achieve comprehensive layout in core cities across Zhejiang Province. It will further radiate the entire Yangtze River Delta urban agglomeration and ultimately be promoted nationwide. The project strongly supports flexible regulation amid fluctuating charging loads and actively builds an efficient and convenient new energy service system.

LISINER’s innovative energy storage & charging integrated solution has successfully built multiple demonstration sites covering diversified scenarios including low-carbon parks, commercial centers, industrial park parking lots, highway service areas and charging stations.
While delivering convenient charging services to users, the solution can be equipped with auxiliary equipment such as photovoltaic modules and small wind turbines to realize efficient utilization of clean energy. Furthermore, service upgrading helps attract more passenger flow for local areas, boost economic returns and shorten the payback period of station investment, which multi-dimensionally verifies the universal value and development potential of such solutions.