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Ankerui Electric Co., Ltd

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Comprehensive electricity management to support dual carbon goals - AcrelEMS2.0 Enterprise Microgrid Energy Efficiency Management Platform
Date: 2024-02-01Read: 2

Background of the plan: Dual carbon background

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Clean substitution on the power generation side and electricity substitution on the consumption side are inevitable ways to achieve carbon peak and carbon neutrality, and the internal power supply and distribution structure of enterprises will also be affected;

New energy sources such as distributed photovoltaics and small-scale wind power generation systems within enterprises will be extensively integrated;

As the penetration rate of electric vehicles continues to increase, a large number of charging stations will be added within the company;

By using energy storage for peak valley arbitrage, participating in demand response, achieving flexible expansion, and also serving as a backup power source, energy storage systems have become an important component of the internal power grid of enterprises;

Therefore, in the future, the internal power supply and distribution structure of enterprises will be composed of sources (municipal power grids, distributed power sources), loads (controllable loads such as charging piles, electricity replacing newly added loads, and other important loads), energy storage, and control centers to form a small "microgrid" system for power generation, distribution, and use. We call it the "enterprise microgrid" to achieve the dual carbon goal, and the enterprise microgrid on the user side is an inevitable trend.

Are companies ready to embrace such changes?

Compared with enterprises within the power grid, the majority of industrial and commercial enterprises also commonly face the following prominent problems:

Long construction period and low construction standards:

The internal power distribution facilities of the enterprise are outdated, limited by the original substation space, renovation costs, and approval procedures, making it difficult to expand transformers and support the large demand for new electric vehicle charging;

Low degree of automation and informatization:

Lack of comprehensive automation and digital technological means to monitor the operation of the entire internal power grid in real time, and the risks of integrating distributed energy and energy storage are invisible and uncontrollable; A complete and comprehensive energy measurement system has not yet been established, and the specific composition of carbon emissions is unknown;

Information dispersion:

There are many and scattered systems related to power distribution within the enterprise, and each subsystem is built by different manufacturers and is independent of each other, which cannot meet the requirements of interconnection and interaction in the future enterprise microgrid scenario. Users cannot centrally grasp the overall supply, distribution, and usage situation through one platform;

Weak operational support capability:

The enterprise itself has weak ability and capability to ensure the operation of internal power supply, distribution, and consumption, with outdated means. In the future, the microgrid of the enterprise will become more complex, and there will be problems with the operation guarantee of the enterprise;

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Customer requirements

Under the background of dual carbon, enterprise microgrids have become an inevitable requirement. However, the current situation of enterprises is difficult to cope with the changes in internal power supply and distribution structure. Enterprises need a complete and comprehensive integrated management platform to achieve coordinated and orderly operation of enterprise microgrids. At the same time, they need to ensure the reliability, safety, conservation, efficiency, and low-carbon of enterprise electricity consumption. They need to reduce the requirements for operation and maintenance personnel through more intelligent means and reduce operation and maintenance costs.

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