Industrial and Commercial PV-Storage-Charging

Integrate Energy Resources, Improve Energy Efficiency

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Demand Context

Integrating energy resources to improve efficiency and reliability through intelligent PV‑storage‑charging management.

In the industrial and commercial sector, there are high requirements for the reliability of power supply and cost control. Meanwhile, with the widespread application of photovoltaic, energy storage and charging facilities, how to achieve efficient coordination and optimized management of these energy devices has become a key issue. Traditional management methods are unable to meet the needs of integrated management of multiple energy devices, and cannot give full play to the comprehensive benefits of the energy system. To improve industrial and commercial energy utilization efficiency, reduce electricity costs and ensure the stability of power supply, an integrated PV-storage-charging (EMS) monitoring system is required.

Key Challenges

Decentralized Energy Assets

PV generation, storage batteries and charging stations operate independently, missing synergy and optimization opportunities.

Unpredictable Load Fluctuations

Without accurate load forecasting, energy dispatch cannot adapt to real‑time charging demand or grid conditions.

Inefficient Energy Use

Lack of coordinated control leads to wasted solar power and suboptimal storage charging/discharging.

Emergency Power Vulnerability

During grid failures, there is no automated mechanism to utilize storage for critical load support.

Solution Overview

EMS platform for coordinated control of PV, storage and charging infrastructure.

Via WideIOT's energy gateways, real-time data such as photovoltaic power generation, energy storage status, and charging demand is collected. This data is transmitted to the integrated PV-storage-charging monitoring platform (EMS), which optimizes energy dispatching among photovoltaic, energy storage, and charging devices based on real-time data and load forecasting. It enables coordinated operation of photovoltaic and energy storage systems and rational energy allocation. In the event of grid failures or emergencies, energy storage batteries can be utilized to provide emergency power supply.

Schema Topology

PV‑storage‑charging integrated architecture

Programme Benefits

Comprehensive energy optimization through intelligent PV‑storage‑charging coordination.

PV and Energy Storage Synergy

Achieve efficient coordination between photovoltaic (PV) and energy storage systems to improve energy utilization efficiency.

Charging Facilities Management

Effectively manage charging equipment to meet the demand for electric vehicle charging.

Energy Data Monitoring

Collect and monitor energy data in real time to provide a basis for decision-making.

Load Forecast and Analysis

Forecast electricity load to optimize energy dispatching strategies.

Intelligent Equipment Control

Realize intelligent regulation of equipment to improve energy utilization efficiency.

Emergency Power Supply Support

Ensure power supply in emergency situations and reduce losses caused by power outages.

Key Performance Metrics

+25%
Energy Self‑consumption
-20%
Peak Load Reduction
-15%
Electricity Cost
+99%
Emergency Availability

Ready to Integrate Your PV, Storage and Charging?

Our specialists will help you deploy an intelligent EMS platform tailored to your commercial and industrial energy assets.

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