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ACS-GR heating intelligent management and control platform

The ACS-GR intelligent management and control platform for heating is a state-of-the-art system that integrates big data, cloud computing, IoT, and AI. It coordinates regulation across user-end, building-level, and heat exchange station devices (ACS-SW, ACS-LY, ACS-HRZ) through a central platform. This allows the secondary network's heat supply to be adjusted in real time based on user demand, which in turn guides the adjustment of the primary network's supply and the heat source's production. The result is a truly on-demand, whole-process intelligent heating system.
  • Commodity name: ACS-GR heating intelligent management and control platform

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  • Description
  • The ACS-GR intelligent management and control platform for heating is a state-of-the-art system that integrates big data, cloud computing, IoT, and AI. It coordinates regulation across user-end, building-level, and heat exchange station devices (ACS-SW, ACS-LY, ACS-HRZ) through a central platform. This allows the secondary network's heat supply to be adjusted in real time based on user demand, which in turn guides the adjustment of the primary network's supply and the heat source's production. The result is a truly on-demand, whole-process intelligent heating system.

     

    Characteristics and advantages:

    1. Intelligent heat supply as needed. It realizes intelligent regulation and control of heat quantity supply of the secondary network, each unit of the secondary network and each building as needed;

    2. The energy-saving effect is obvious, and it saves over 5% electricity compared with the traditional mode;

    3. With high intelligence degree, it can realize the long-term automatic control rate of over 99%;

    4. It significantly reduces the labor intensity of operators and saves 50-70% of labor cost. This system not only realizes the basic function of unattended remote control, but also realizes intelligent regulation according to the specific load and working condition at each heat exchange station, the climate change and the specific heat quantity demand and does not require local manual regulation, operators only need to perform limited interference in the centralized control center when abnormal situations or special problems occur during operation of the heat exchange station, which significantly reduces the labor intensity and labor cost of workers;

    5. Weather forecast: this system can perform heat quantity calculation and supply in advance according to the change in the outdoor temperature for a period of time in the future;

    6. Elimination of Heat Supply Lag:

    Compensates for the hydraulic transit time between the heat exchange station and buildings, enabling precise and timely heat delivery.

    7. Time-Scheduled Heating:

    Allows for setting different room temperatures for various building types based on time schedules, automatically adjusting heat supply to match.

    8. Staggered Pump Operation:

    Enables the circulating pumps for individual units to be scheduled for start-up and shutdown at different times as needed, reducing simultaneous power draw.

    9. Pre-Alert and Real-Time Alarm System:

    Generates early warnings based on abnormal operational signals and triggers immediate real-time alarms for critical issues like pipeline leaks.

    10. Integrated GIS with Real-Time Monitoring:

    The system features a geographic information system (GIS) that visually displays the locations of all heat sources, exchange stations, and pipelines. Real-time operational, fault, and leakage signals are overlaid on the map for immediate visualization.

    11. Three-Tiered Control Architecture:

    A safe and reliable design with three redundant control levels: Local, Centralized (Control Center), and Cloud-based.

     

     

    Interface display

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