Successfully Concluded | GCEVO Energy Showcases at the 4th PV + Storage + DC Flexible Energy Conference, Advancing System Economics, Reliability, and Multi-Scenario Adaptability with Power Routers as Core Energy Devices

作者:

The three-day 4th PV + Storage + DC Flexible Energy Conference (2026) has successfully concluded in Shanghai.

Hosted by the PV + Storage + DC Flexible Energy Professional Committee of China Association of Building Energy Efficiency, the conference focused on cutting-edge topics including PV + storage + DC flexible building energy systems, DC distribution, flexible energy consumption, virtual power plants, and zero-carbon park development.

The event brought together industry experts, research institutions, energy companies, and upstream and downstream partners across the value chain to explore pathways toward low-carbon transformation of building energy systems.

As a supporting organization of the conference, GCEVO Energy participated throughout the event and presented its core solutions for user-side DC power distribution.


Power Router Applications in User-Side DC Distribution

On the afternoon of July 11, during the DC Distribution and Flexible Energy Consumption Forum, GCEVO Energy Chairman Tao Wang delivered a keynote speech titled:

“Applications of Power Routers in User-Side DC Distribution Scenarios.”

The presentation focused on the challenges faced by PV + Storage + DC Flexible energy systems, introducing the technical principles and practical applications of Power Routers as the core energy hub of DC microgrids.

The Power Router enables efficient coordination of:

  • Photovoltaic generation
  • Energy storage battery systems
  • DC charging infrastructure
  • DC building loads

By reducing energy losses caused by repeated AC/DC conversions, it enables flexible energy scheduling for industrial parks and buildings.

During the daytime, renewable electricity generated by PV systems is prioritized for local consumption, while surplus energy is stored in energy storage systems.

During nighttime or peak demand periods, stored energy can be flexibly discharged. Combined with grid demand response mechanisms, the system achieves:

  • Peak shaving and valley filling
  • Reduced electricity costs
  • Improved renewable energy utilization

The solution is highly compatible with PV + Storage + DC Flexible applications such as zero-carbon buildings and park-level microgrids, addressing critical challenges in the deployment of user-side DC distribution systems.


Integrated PV + Storage + Load Power Router on Display

During the event, GCEVO Energy also exhibited its integrated PV + Storage + Load Power Router.

The device is designed for zero-carbon building DC networking architectures based on PV + Storage + DC Flexible technologies.

It establishes direct DC interconnection pathways among:

  • Photovoltaic systems
  • Energy storage systems
  • Building DC loads

By reducing unnecessary AC/DC conversion processes, the system improves local renewable energy utilization efficiency.

At the same time, it enables flexible load management and intelligent energy scheduling, helping buildings:

  • Maximize self-consumption of renewable energy
  • Reduce overall carbon emissions
  • Achieve more efficient energy management

It provides a standardized DC integration solution for zero-carbon buildings.


Building the Future of Flexible and Intelligent Energy Systems

Seizing the opportunities brought by the rapidly developing PV + Storage + DC Flexible energy sector, GCEVO Energy will continue to enhance its core technologies in:

  • DC power distribution
  • Power Router platforms
  • Intelligent energy management

The company will further expand real-world applications across diverse PV + Storage + DC Flexible scenarios, working together with industry partners to build a greener and smarter energy ecosystem.

Together, we are accelerating the transition of building energy systems toward a future that is:

Low-carbon · Efficient · Flexible · Intelligent.

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