PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES High-Efficiency Power Conversion System for Large-Scale Renewable Energy Storage

PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES High-Efficiency Power Conversion System for Large-Scale Renewable Energy Storage

  • PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES High-Efficiency Power Conversion System for Large-Scale Renewable Energy Storage
  • PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES High-Efficiency Power Conversion System for Large-Scale Renewable Energy Storage
Summary
The PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES is a high-efficiency, large-scale energy storage solution integrating advanced power electronic battery stacks and transformers. Designed to replace traditional PCS and transformers, it boosts system conversion efficiency by up to 2%, reduces energy loss, and enhances battery management precision. Featuring module-level controllers and matrix active safety management, it ensures superior safety with low-voltage architecture and intelligent redundancy. Ideal for renewable energy storage applications, this system supports fast grid response, improves investment ROI, and meets the latest GB standards for dynamic active power support. With SiC+ soft switching technology and high-frequency isolation, it offers a future-proof, cost-effective choice for utility-scale and industrial energy storage projects.More
Specifications
System Efficiency:
Improved by 2% over traditional solutions
Cooling Method:
Not specified
Battery Management:
Refined battery management
  • PET Direct-Mounted Energy Storage Matrix E? MATRIX-ES High-Efficiency Power Conversion System for Large-Scale Renewable Energy Storage
Key Advantages
More secure
Equipped with module-level battery controllers and matrix active safety management technology to ensure ultimate safety Modular high-frequency electrical isolation and core-network decoupling prevent high-voltage penetration and reduce leakage risks Low potential battery arrangement eliminates high-voltage short circuit concerns due to leakage Intelligent redundancy supports online bypass of module or converter failures
More refined
DC side independence from inverter conditions reduces the need for series cells by 50%, cutting power loss by 4% Active thermal balancing increases available power by 7% and enhances cycle life by 25%
More efficient
SiC+ soft switching power electronic transformers improve system efficiency by 2% over traditional solutions Eliminates no-load loss of power frequency transformers, boosting efficiency by 1%
Strong support
No inverter condition limitations, enabling high-penetration dynamic active power support, meeting the latest GB standards Low-latency, high-bandwidth communication improves system response speed by 40%
Technical parameter table
battery controllers, energy storage converters, integrated energy storage systems, power electronic transformers, intelligent management cloud platforms
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