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Central Power Supply System

In the rubber and plastic molding industry, energy consumption has always been an important cost and environmental pressure. In order to improve energy efficiency, reduce energy costs, and commit to sustainable development, the introduction of intelligent energy-saving power supply systems (also known as central power supply systems) has become an important solution. The intelligent energy-saving power supply system uses advanced technology and intelligent management methods to create a more sustainable development environment for the rubber and plastics industry by optimizing energy use and improving the efficiency and energy-saving effects of the power system.

The application of intelligent energy-saving power supply systems (central power supply systems) in injection molding workshops and extrusion industries in the rubber and plastics industry has multiple benefits. First, through the energy consumption monitoring and management function, the system monitors energy consumption in real time, accurately grasps the distribution of energy consumption and peak and valley loads, and provides scientific basis for energy dispatch and optimization. Through data collection and analysis, energy waste and abnormal consumption can be identified, and timely measures can be taken to make adjustments and reduce energy losses.

Secondly, the intelligent energy-saving power supply system adopts intelligent lighting system and intelligent temperature control system to achieve precise adjustment of lighting and temperature control in the injection molding workshop and extrusion industry. The intelligent lighting system automatically adjusts lighting brightness and switches based on the lighting conditions and personnel activities in the workshop to avoid unnecessary waste of energy. The intelligent temperature control system intelligently adjusts the operating modes and parameters of air conditioners, refrigeration equipment, etc. based on workshop temperature requirements and equipment status, providing precise temperature control and minimizing energy consumption.

In addition, the intelligent energy-saving power supply system also has prediction and optimization scheduling functions. Based on historical energy consumption data and related factors, the system establishes an energy consumption prediction model, and uses the prediction results to reasonably arrange the switch-on time and operating mode of the equipment, optimize energy scheduling and production plans, and achieve the best utilization of energy and energy-saving effects.

Finally, the intelligent energy-saving power supply system encourages user participation and feedback. By providing user interfaces such as energy management apps or displays, operators can understand energy consumption and equipment operating status in real time, and make corresponding adjustments based on system feedback. User participation and increased awareness will promote the cultivation of energy conservation awareness and the optimization of energy consumption.

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