Teaching buildings are areas on campus with relatively complex electrical needs, as they contain a large number of lighting fixtures, multimedia teaching equipment, and air conditioners. 3-phase digital energy meters installed on the power lines of each floor or classroom can accurately measure the electricity usage in different areas and periods. The school can use this data to optimize the usage arrangement of the equipment.
For example, during non-teaching periods, they can automatically turn off some lights and appliances, or reasonably control the duration of air conditioner use according to different seasons. This not only meets the teaching needs but also maximizes electricity savings and improves energy utilization efficiency.
Student dormitories are places with high population density and frequent use of electrical appliances. In these areas, 3-phase digital energy meter plays multiple roles. On one hand, they accurately measure the electricity consumption of each dormitory, facilitating tasks like electricity bill sharing. On the other hand, by monitoring electricity usage data in real-time, they can promptly detect any illegal use of high-power appliances. If abnormally high current is detected, they can immediately alert the dormitory management staff to prevent safety issues caused by electrical overload. This also helps guide students to use electrical appliances reasonably and safely, creating a good dormitory electrical environment.
Public areas on campus, such as canteens, libraries, and playgrounds, also rely on electrical supply to maintain normal operations. The application of 3-phase digital energy meters in these areas can help management personnel understand the changes in electricity demand at different times, allowing for the rational allocation of electricity resources.
For example, ensuring sufficient power supply during peak dining times in the canteen, while reducing unnecessary equipment power supply during non-operating hours; or automatically turning off some energy-consuming devices after the library closes. Through refined electricity management, the efficiency of using public resources on campus can be improved, thus reducing operational costs.
Currently, with continuous technological advancement, 3-phase digital energy meters are also developing towards more intelligent, networked, and multifunctional directions. In terms of intelligence, more artificial intelligence technologies are being integrated, allowing for automatic analysis and prediction of electricity usage data, identifying potential electricity issues in advance, and providing optimization suggestions.
Networking allows the meters to better connect with the campus energy management platform, enabling remote meter reading, remote control, and data sharing, further improving the efficiency and convenience of electricity management. Multifunctionality means that they are not limited to electricity metering; they may also integrate more functions such as electricity quality monitoring and fault diagnosis of electrical devices in the future, providing more comprehensive services for campus electricity management.
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