Recently, the 100MW/200MWh grid-side independent energy storage demonstration project invested and constructed by LISINER has successfully completed energization and officially entered the trial operation phase. As a key practice for building a new power system in North China, the project integrates innovative models and advanced technologies to inject new momentum into the optimization of regional energy mix, and sets a replicable benchmark model for the development of the national energy storage industry.

Driving Energy Transition Through Innovation
Adopting high-standard compact design and equipped with high-efficiency energy storage system solutions, the project leverages modular architecture and intelligent management technologies to deliver the following core strengths:
• Flexible Expandability: Modular string design guarantees system independence, supporting elastic capacity expansion and rapid fault isolation.
• Sustained Leading Performance: Deployed high-voltage liquid cooling technology to comprehensively boost energy conversion efficiency and system stability.
• Comprehensive Safety Assurance: Based on lithium iron phosphate battery technology combined with an AI intelligent monitoring system to build a full-lifecycle safety protection network.
• Intelligent Collaborative Management: Self-developed dual-control BEMS that deeply matches grid requirements to realize efficient coordination among source, grid, load and storage.
• Benchmark Industry Practice: Relying on mature experience and a professional team, the whole process from construction to grid connection is completed efficiently, verifying the feasibility of innovative models.
Empowering New-quality Development via Digital Intelligence
Through multi-dimensional operational strategies coordinated with regional policies, the project explores sustainable commercialization pathways:
• Capacity Sharing Model: Break the bottleneck of supporting energy storage for new energy and boost efficient consumption of clean energy.
• Grid Coordination Services: Provide auxiliary services such as peak and frequency regulation to enhance the flexible regulation capacity of the power system.
• Market Value Exploration: Innovate mechanisms for participating in power trading and unlock the value-added potential of energy storage assets.
In addition, as the “third pole” of the new power system, it boasts prominent strategic value:
It strengthens grid resilience through multi-scenario applications to secure energy supply; facilitates in-depth consumption of renewable energy and accelerates the green transition of the energy mix; innovates market-oriented operation mechanisms and drives efficient reform of the power system.
Pioneering Forward-looking Layout with Solid Strength
Moving forward, drawing on the successful experience of integrated “Technology + Model” from this demonstration project, LISINER will further optimize the process system covering project planning, construction and operation, and deliver more replicable and promotable benchmark cases for the large-scale application of new energy storage nationwide during the 14th Five-Year Plan period. Furthermore, LISINER will forge close partnerships with local governments and ecological partners, actively explore innovative “Energy Storage +” models, and build a new energy industrial ecosystem. The company will progressively realize diversified industrial upgrading, drive coordinated development of industrial chains including renewable energy, battery manufacturing, intelligent equipment and energy asset management within the region, foster a hundred-billion-level energy industrial cluster, and inject fresh momentum into high-quality regional economic development.
The successful energization of this independent energy storage station in a city of Hebei fully demonstrates LISINER’s comprehensive strength and represents its solid practice in advancing energy revolution. Going forward, LISINER will continue to explore innovative applications in the energy sector. Centered on delivering the Dual Carbon Goals, the company will push ahead with more highly reliable and high-yield projects, and contribute core strength to building a modern energy system that is clean, low-carbon, safe and flexible.