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Related Experiment Video

Updated: Jul 26, 2025

Large Scale Energy Efficient Sensor Network Routing Using a Quantum Processor Unit
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Some key issues in building a "source network load storage" complementary energy internet in China.

Qingbo Tan1, Xiangguang Li2, Wei Fan3

  • 1CITI University of Mongolia, Ulaanbaatar, 999097-15141, Mongolia.

Environmental Science and Pollution Research International
|June 21, 2023
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The energy internet facilitates low-carbon energy systems by coordinating "source network load storage" to reduce carbon emissions. This promotes a new power system and innovative business models for a dual carbon future.

Keywords:
Data miningEnergy internetIntegrated energySource network load storage

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Area of Science:

  • Energy Systems Engineering
  • Environmental Science
  • Information Technology

Background:

  • China's energy landscape faces challenges in supply and demand, necessitating innovative solutions for carbon reduction.
  • The "dual carbon" goals require a transition to low-carbon energy systems, with energy efficiency and reduced emissions as primary objectives.

Purpose of the Study:

  • To introduce the energy internet concept and its core technologies in the context of China's energy situation.
  • To propose a framework for an energy internet integrating "source network load storage" for a novel power system.
  • To analyze the value creation and business innovation potential of energy internet projects.

Main Methods:

  • Conceptual introduction of energy internet principles and technologies.
  • Proposal of a coordinated "source network load storage" model.
  • Case study analysis of an energy internet demonstration project.

Main Results:

  • The energy internet can break down energy system barriers, enabling coordinated resource management.
  • A new power system with unique characteristics can be constructed based on the energy internet.
  • Demonstration projects highlight value creation in power markets, comprehensive energy services, and diversified low-carbon energy.

Conclusions:

  • The energy internet is crucial for achieving "dual carbon" targets through optimized energy systems.
  • Coordinated "source network load storage" is key to developing a sustainable and efficient energy infrastructure.
  • Future energy internet development should focus on market mechanisms, comprehensive services, and low-carbon energy innovation.