Integrated Photovoltaic Folding Storage Container Project

Case

Integrated Photovoltaic Folding Storage Container Project

Application Supports grid dispatch and peak shaving/valley filling for commercial and industrial applications; Enables self-generation for self-consumption, with optional grid injection of surplus power (configuration dependent);

Parameter 24 kWp+30 kW / 71 kWh

Equipment Integrated PV-Storage Unit,Batteries and Battery Management System (BMS),Air Conditioning System,System Architecture

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  1. Project Overview

This project constitutes a DC-coupled photovoltaic-storage integrated system, incorporating folding photovoltaic panels with energy storage functionality. It is designed for flexible grid dispatch and peak shaving/valley filling applications within commercial and industrial settings. The system supports intelligent grid-connected and off-grid switching, offering multiple operational modes including self-generation for self-consumption, anti-backflow protection, off-grid power supply, and electricity arbitrage. It aims to enhance energy autonomy, supply reliability, and economic benefits.

 

  1. Project Details

Applications

Supports grid dispatch and peak shaving/valley filling for commercial and industrial applications;

Enables self-generation for self-consumption, with optional grid injection of surplus power (configuration dependent);

Automatically switches to off-grid mode during mains power outages to ensure continuous supply to critical loads;

Leverages peak-off-peak electricity price differentials by charging during off-peak hours and discharging during peak hours to reduce electricity costs.

Installed Capacity

Photovoltaic capacity: 24 kWp (foldable photovoltaic container);

Energy storage system capacity: 30 kW / 71 kWh.

Principal Equipment

Integrated PV-Storage Unit

Batteries and Battery Management System (BMS)

Air Conditioning System

System Architecture: Integrated PV+storage design enabling rapid deployment.

 

  1. Project Advantages

High-Efficiency Integration: DC-coupled architecture enhances energy conversion efficiency;

Flexible Deployment: Foldable container design facilitates transport and on-site installation with plug-and-play capability;

Intelligent Operation: Built-in Energy Management System (EMS) automatically switches operating modes based on grid status, PV output, and load demand;

Strong Cost Efficiency: Automatically optimises charging/discharging via peak shaving and valley filling strategies, significantly reducing demand charges;

High Reliability: Supports seamless grid-connected/off-grid switching, ensuring continuous power supply during grid outages;

Grid-Friendly: Configurable anti-backflow function meets policy or customer requirements prohibiting power injection into the grid.

Application

Supports grid dispatch and peak shaving/valley filling for commercial and industrial applications; Enables self-generation for self-consumption, with optional grid injection of surplus power (configuration dependent);

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