China and the U.S. to Launch Smart Grid Project Cooperation

A few days ago, the Sino-U.S. Cooperation Phase II “China-US Cooperation Smart Grid Consultation Project” Chinese preparatory meeting was held at Jinling Hotel. This meeting discussed the preliminary preparation and planning of the research topics and research contents of the smart grid project. Experts from the Academician of the Chinese Academy of Sciences and the Chinese Academy of Engineering believe that in the future, power generation will be dominated by renewable energy. The key issue that needs to be resolved is the large-scale development of renewable energy and grid-connected power generation.

Because China and the United States have too many similarities in future energy issues, in view of this, China and the United States Academy of Sciences and the Chinese Academy of Engineering have jointly put forward the "China-US Cooperation Smart Grid Consulting Project" bilateral research cooperation project.

During the discussion, the participating academic experts believed that the research content of the “Sino-US Cooperation Smart Grid Consulting Project” should focus on the future smart grid architecture and operation mode, and how the future smart grid integration with the Internet of Things, telephone networks and television networks; What kind of operating mode does the car choose in the smart grid? Not only domestic experts pay attention to solar power generation and grid connection, but also the U.S. Academy of Engineering and the Academy of Sciences have listed the “technical challenge of variable-output, intermittent, renewable power integration” as the “first topic” of the project. Tackling this technical challenge.

Din Rail Terminal Block

Basic Features
1. The terminal has universal mounting feet so that it can be installed on U-rail NC 35 and G-rail NC32.
2. The closed screw guide hole ensures ideal screwdriver operation.
3. Equipped with uniform accessories for terminals of multiple cross-section grades, such as end plates, grouping partitions, etc.
4. Potential distribution can be achieved by inserting a fixed bridge in the center of the terminal or an edge-plug bridge inserted into the wire cavity.
5. The grounding terminal and the N-line slider breaking terminal with the same shape as the common terminal.
6. Using the identification system ZT, unified terminal identification can be realized.
7. The rich graphics enhance the three-dimensional sense of the wiring system.

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