The competition in grid-forming energy storage has entered a new developmental stage, featuring dual industrial characteristics of explosive demand expansion and refined value competition. While full-scenario grid-forming energy storage is witnessing accelerated large-scale deployment and rising global penetration, the industry is shifting from blind technological speculation toward practical value verification across diverse application scenarios. Against this industrial transformation backdrop, TBEA New Energy stands out by leveraging systematic technological innovation and scenario-based iterative optimization, leading the industry’s shift from single technological breakthroughs to full-link value reconstruction.
At the ongoing 2025 China Wind Power Exhibition (CWP2025), TBEA New Energy fully demonstrated its integrated industrial capabilities covering technological R&D, product iteration and large-scale scenario implementation. Centered on three core solution portfolios — string grid-forming energy storage system solutions, TB-eCloud™ intelligent energy operation solutions, and power quality optimization solutions — the company has built a complete industrial system that empowers end-to-end commercialization of grid-forming energy storage technologies.
The company unveiled a full lineup of upgraded energy storage hardware products, including the TE5000KT-ED string energy storage converter & step-up integrated machine, AC/DC integrated string energy storage units, TE400/420/430K-HV-BL series energy storage converters, and TE215K-HV string PCS devices. The comprehensive product matrix underpins the large-scale popularization of full-scenario grid-forming energy storage, facilitating the construction of a safer, more efficient and intelligent new energy power system.
Industry Paradigm Shift: Energy Storage Transitions from Policy-Driven to Value-Driven
China’s energy storage industry is undergoing a fundamental structural upgrade. Driven by the release of key industrial policies including Document No.136 and No.394, the sector is phasing out the extensive, policy-backed volume expansion model and evolving toward market-oriented, value-centric high-quality development. Enterprises lacking core technological barriers and scenario adaptation capabilities are facing continuous market clearance, while leading manufacturers with systematic solution capabilities are gaining incremental market share.
Beyond isolated parameter upgrades and technological iterations, TBEA New Energy adheres to a pragmatic industrial development philosophy. The company translates cutting-edge technologies into actionable, scenario-oriented industrial tools, rather than pursuing superficial technological breakthroughs. The large-scale mass production of 500Ah+ high-capacity cells and 6MWh-level energy storage systems, accelerated multi-scenario implementation of grid-forming technologies, and in-depth participation in power market transactions all reflect the firm’s focus on full-life-cycle cost reduction and tangible industrial value creation.
TBEA New Energy firmly believes that the future evolution of energy storage systems will center on four core trajectories: large capacity, high safety, authentic grid-forming capability, and full-life-cycle cost optimization. Its systematic innovation logic embeds superior performance and intrinsic safety into product genes, achieving differentiated competitiveness amid homogeneous industry competition.
Grid-Forming Technology: Core Stabilizer for New Power Systems
With the surging penetration of new energy generation, high-power electronic power systems suffer from insufficient rotational inertia and weak anti-interference capability, making grid stability and fault tolerance increasingly critical. As a core foundational technology for new power systems, grid-forming energy storage actively constructs grid voltage and frequency support, rather than relying on passive grid response. It effectively simulates synchronous generator characteristics, supplements system inertia, and elevates grid operational resilience, driving the energy transition from mere grid connection to proactive grid construction.
Industry institutions project that the global penetration rate of grid-forming energy storage will reach 20% within the next five years, unlocking massive long-term market space. As one of the earliest domestic enterprises to deploy grid-forming technologies, TBEA New Energy has obtained authoritative certification for its self-developed grid-forming PCS from the China Electric Power Research Institute. The company advances scenario-based iterative deployment through industrial project landing and industry-university-research cooperation, continuously optimizing core control algorithms to accelerate the industry’s transition from demonstration verification to large-scale commercial application.
Full-Scenario Solution Matrix Empowers Large-Scale Commercialization
Benefiting from full-industry-chain independent controllable capabilities covering PCS core equipment and system integration, alongside long-term technical accumulation in power electronics and grid interaction, TBEA New Energy has formed a dual-driven development model of technological iteration and market verification. The company’s upgraded string grid-forming energy storage solutions integrate refined management and active grid-forming design concepts, launching two flagship highly integrated configurations: “AC/DC integrated energy storage unit + intelligent box transformer + EMS” and “20-foot liquid-cooled container + string PCS + EMS”.
The dual product configurations form a comprehensive next-generation string grid-forming energy storage matrix. Adopting modular design, the solutions substantially improve system availability and return on investment. More importantly, the built-in active grid-forming capability provides core voltage stabilization, frequency support and inertia enhancement for new power systems. Delivering long-term scenario value across diverse application environments, TBEA’s grid-forming energy storage solutions achieve dual breakthroughs in safety cost reduction and grid stability empowerment, consolidating the company’s leading position in the high-value track of full-scenario grid-forming energy storage.