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Industrial and Commercial Photovoltaic Storage Coordination Controller

NegotiableUpdate on 03/05
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Overview
The industrial and commercial photovoltaic energy storage coordination controller is an intelligent coordination controller applied in microgrids, distributed generation, energy storage and other fields. The device meets the access requirements of photovoltaic systems, wind power generation, energy storage systems, and charging piles. Through round the clock data collection and analysis of the microgrid system, it monitors the operation status of photovoltaic, wind power, energy storage systems, charging piles, and the health status of the microgrid. Based on this, with the goal of safe and economic optimization operation, the most effective control strategy is obtained to implement r n regulation and control of the microgrid, achieving real-time dynamic adjustment of distributed energy, energy storage systems, and loads in the microgrid.
Product Details

Industrial and Commercial Photovoltaic Storage Coordination ControllerFeatures:

The ACCU-100 microgrid coordination controller has the following functional features:

Data collection: Supports real-time operation of multiple channels such as serial port and Ethernet, meeting the requirements for various wind and photovoltaic inverters, energy storage and other equipment access;

Communication Management: Supports Modbus RTU、Modbus TCP、IEC 60870-5-101、IEC 60870-5-103、IEC60870-5-104、MQTT According to the communication protocol, cloud edge collaboration (combined with Ankerui Smart Energy Management Cloud Platform for remote operation and maintenance), OTA upgrade, on-site/remote switching, and local human-machine interaction (optional) can be achieved;

Edge computing: flexible alarm threshold setting, active uploading of alarm information, data consolidation calculation, logic control, breakpoint continuation, data encryption, 4G routing;

Strategy management: anti backflow, planning curve, peak shaving and valley filling, demand control, active/reactive power control, photovoltaic energy storage coordination, etc., and support strategy customization;

System security: User permissions designed based on an untrusted model to prevent unauthorized users from infiltrating; Based on data encryption and data security verification technology, data calibration and tamper proof mechanisms are adopted to achieve data authentication and traceability;

Operational safety: Collect and analyze signals and measurement data from the entire station, including batteries, temperature control, and fire protection, to achieve operational safety warning and prediction.


Industrial and Commercial Photovoltaic Storage Coordination Controllerfunction

  1. Multi energy coordinated control

    • New energy accessIn photovoltaic, wind power, energy storage and other systems, coordinate the output of different energy sources, prioritize the consumption of renewable energy, and reduce power waste.

    • Microgrid managementRealize dynamic balance of distributed power sources (such as diesel generators, fuel cells), energy storage devices, and loads, and support grid/off grid mode switching.

    • Combined Cooling, Heating, and Power (CCHP)Optimize the operation of equipment such as gas turbines, waste heat boilers, and absorption chillers to improve the comprehensive utilization rate of energy.

  2. Equipment linkage control

    • Industrial AutomationCoordinate the motors, pumps, valves, and other equipment on the production line, and dynamically adjust operating parameters (such as speed and flow) according to process requirements.

    • Building Energy ManagementLinkage of air conditioning, lighting, elevators and other systems to achieve on-demand energy supply (such as adjusting air conditioning temperature according to pedestrian flow).

  3. Demand Response (DR)

    • In response to grid peak shaving, frequency regulation, or voltage regulation instructions, participate in the auxiliary service market by adjusting controllable loads (such as charging piles, energy storage) or distributed power output.

  4. Fault self-healing and protection

    • Real time monitoring of system status, rapid identification and isolation of fault points, restoration of power supply through backup equipment or adjustment of operational strategies