Sustainable
Our storage systems absorb surplus renewable generation and release it when local demand rises. Intelligent charge control increases solar self-consumption while reducing curtailment, grid imports and avoidable conversion losses.
Smart energy storage solutions
Intelligent battery energy storage systems for peak shaving, solar self-consumption, backup power and grid relief — powered by COMEXIO and assembled in Dubai for projects worldwide.
Our storage systems absorb surplus renewable generation and release it when local demand rises. Intelligent charge control increases solar self-consumption while reducing curtailment, grid imports and avoidable conversion losses.
The energy management system analyzes load profiles, tariffs and grid limits to schedule charging and discharging for peak shaving, self-consumption and time-of-use optimization. This lowers demand charges and improves asset utilization.
The BMS, EMS and power conversion system continuously monitor cell condition, temperatures, voltage and operating reserves. Layered protection functions and controlled backup strategies support power quality and critical loads during grid disturbances.
Modular storage units, standardized interfaces and project-specific engineering let the platform operate across different grid codes, climates and applications — combining central engineering expertise with regional installation, commissioning and service support.
Solutions
DWC ENERGY GROUP combines battery hardware, power conversion and intelligent control into a coordinated energy ecosystem — designed around the way your site actually operates.
01 / COST CONTROL
Cost optimization for energy-intensive operations
DWC ENERGY GROUP systems coordinate generation, storage and consumption to lower grid demand, improve solar self-consumption and shift flexible loads into more economical operating windows. Intelligent control reacts automatically to changing site conditions, helping businesses avoid costly demand spikes, use existing grid capacity more efficiently and create more predictable energy costs without disrupting daily operations.
What is peak shaving? Battery energy is used during short periods of high demand to keep the site's grid load below a defined limit.
Benefits: Lower demand charges, less strain on the grid connection and more predictable energy costs.
What is self-consumption? Locally generated solar energy is used directly or stored in a battery for later use instead of being exported to the grid.
Benefits: Higher use of your own renewable energy, lower electricity purchases, less exposure to rising energy prices and greater energy independence.
What is tariff optimization? Battery charging and flexible energy use are shifted to lower-price tariff periods, while stored energy is used when electricity prices are higher.
Benefits: Lower energy costs, reduced exposure to peak tariffs and smarter use of flexible loads and battery storage.
02 / RESILIENCE
Resilience for commercial & industrial operations
Unplanned downtime costs more than energy ever will. ENERSTO can be configured to keep critical processes, machinery and infrastructure online through grid outages and fluctuations. Fast switchover and island-mode capability protect production output, margins and delivery commitments while reducing dependency on the public grid.
Protect critical loads. Critical loads remain supplied during outages, protecting production processes, machinery and essential infrastructure.
Benefits: Higher operational continuity, reduced downtime and a controlled restart of essential processes.
Reduce grid dependency. On-site storage reduces exposure to grid instability, congestion and electricity price spikes while maintaining greater control over energy availability.
Benefits: More predictable operations, lower grid dependency and greater protection from external energy-market conditions.
Balance fluctuating power. Active load balancing smooths fluctuations from renewable generation and peak demand to stabilize power flow at the grid connection.
Benefits: Improved power quality, fewer load-related constraints and better use of the available grid capacity.
03 / NEW VALUE
New value from flexible energy operations
A market-ready system architecture prepares commercial and industrial sites for multi-use strategies, flexibility services and future energy trading models. Open interfaces and intelligent controls allow operating priorities to evolve as tariffs, grid requirements and market opportunities change, helping owners combine technical resilience with new revenue potential and protect the long-term value of their storage investment.
What is multi-use? A battery combines several operating strategies, such as peak shaving, self-consumption, backup and grid services, within one coordinated system.
Benefits: More value from the same asset, higher utilization, diversified revenue opportunities and a faster return on investment.
What is demand response? Site loads and battery operation are adjusted in response to grid signals, energy prices or requests from an energy provider.
Benefits: Lower peak costs, potential flexibility revenues, improved grid stability and more control over when energy is consumed.
What is market readiness? The storage system includes the controls, data interfaces and operating flexibility needed to participate in future energy and flexibility markets.
Benefits: Easier integration with aggregators, access to new revenue models, adaptable operation and protection of the long-term investment.
Products
From compact commercial cabinets to project-configured container systems, the ENERSTO platform creates a clear path from first installation to multi-megawatt deployment.
powered byCOMEXIO
Residential

ENERSTO 64Residential energy storage
32 - 64 kWhDesigned for villas, multi-family homes and residential communities, ENERSTO 64 starts with 32 kWh and can be expanded in 16 kWh steps up to 64 kWh. It stores surplus solar energy for evening use, increases self-consumption and reduces reliance on the grid. Intelligent control coordinates household loads, heat pumps and EV charging while reserving capacity for selected backup circuits.
Commercial

ENERSTO 112Commercial energy storage
112 kWhDesigned for offices, retail, hospitality and mixed-use properties, ENERSTO 112 reduces demand peaks, shifts consumption into lower-cost tariff periods and increases solar self-consumption. Intelligent energy management coordinates HVAC, EV charging and building loads while providing scalable capacity for operational resilience and future expansion.
Industrial

ENERSTO 224Industrial energy storage
224 kWhDesigned for production plants, logistics centers and large charging hubs, ENERSTO 224 delivers the power and capacity required for peak shaving, grid-connection relief and renewable integration. Its scalable multi-cabinet architecture supports demanding duty cycles, power-quality requirements and continuity strategies for energy-intensive operations.
Energy intelligence
DWC ENERGY GROUP Energy Intelligence uses an intelligent energy management system (EMS), developed and manufactured in Germany, to record, control and optimize energy flows across batteries, solar generation, charging infrastructure, generators and the grid.
The Energy Management System (EMS) consolidates live measurements from batteries, inverters, solar generation, charging infrastructure, site loads and the grid. Operators can view power flows, state of charge, alarms and operating modes in one clear interface, enabling fast diagnosis and transparent control of the complete energy system.
The Battery Management System (BMS) continuously monitors cell voltage, temperature, current, state of charge and state of health while applying protection limits at battery level. Working together with the EMS, it enables automated charging and discharging strategies while safeguarding performance, availability and battery lifetime.
Authorized customers can access live system information remotely through an encrypted and authenticated internet connection. All operational data is stored locally within the site system and is not persisted in the cloud, minimizing external data exposure. Open interfaces enable controlled integration while this security architecture protects the overall system and its data.
Applications
Every project starts with a different challenge. Our modular architecture adapts to the site, the operating model and the commercial objective.
Integrated storage coordinates rooftop solar, household loads, heat pumps and EV charging to increase self-consumption and maintain selected backup circuits during grid interruptions.
For private homes and residential developments, the system stores surplus solar energy for evening use, limits grid peaks created by heating and charging, and can reserve capacity for essential loads. Modular batteries and intelligent controls allow the solution to grow with future energy demand.
Scalable battery storage reduces demand peaks, shifts consumption into lower-cost tariff periods and supports solar self-consumption across offices, retail, hospitality and mixed-use properties.
Built for operational resilience, commercial storage solutions create more predictable energy costs without disrupting daily operations. The energy management system coordinates batteries, solar generation, HVAC and charging infrastructure while monitoring connection limits and prioritizing the operating strategy with the strongest commercial value.
High-power storage stabilizes energy-intensive processes, protects sensitive equipment and relieves constrained grid connections for production, logistics and large charging hubs.
Industrial systems are built for operational resilience and engineered around load profiles, power quality and continuity requirements. They can combine peak shaving, backup support, renewable integration and controlled charging with scalable power conversion, thermal management and monitoring designed for demanding duty cycles.
Services
A storage project creates value when technology, controls and project execution work as one. DWC ENERGY GROUP supports the full journey with a practical, partner-led approach — powered by COMEXIO. The battery management system (BMS) and energy management system (EMS) are developed in Germany by COMEXIO to deliver coordinated, transparent and reliable system operation.
Plan your projectWe analyze interval load profiles, peak demand, solar generation, grid-connection limits, critical loads and tariff structures to define the battery’s required power, usable capacity and operating cases.
We engineer the energy storage system around cell chemistry, C-rate, thermal management, inverter topology, protection and site interfaces. The BMS, EMS and control software are developed and made in Germany by COMEXIO, supported by single-line diagrams and a performance model.
We coordinate equipment, factory acceptance testing, civil and electrical interfaces, installation, commissioning and functional testing so the storage system enters service safely and as specified.
Continuous monitoring tracks state of charge, state of health, temperatures, alarms and dispatch performance. All operational data is stored locally within the site system and is not persisted in the cloud. Customers receive secure, authenticated live access over the internet through an encrypted connection, providing real-time visibility without transferring data into cloud storage. Remote optimization and preventive maintenance protect system availability and lifetime value.
About DWC ENERGY GROUP
DWC ENERGY GROUP develops intelligent storage solutions for the new energy economy. From our hub in Dubai, we connect proven technology, smart control and international project expertise to help businesses build more resilient and independent energy systems.
We turn proven technologies into practical energy solutions that perform reliably in real operating conditions.
We work alongside customers and partners from the first concept through operation and future expansion.
Every system is designed to strengthen resilience, reduce energy costs and accelerate cleaner energy use.
Start a project
Tell us where you operate, what your energy profile looks like and what you want storage to achieve. We’ll help define the next practical step.