Battery Storage (BESS)

services

Battery Storage (BESS)

Battery storage for industry and grid. We size BESS against the use case (peak shaving, self-consumption, frequency response, arbitrage), build the financial model with revenue stack and funding logic, and deliver technical design through Front-End Engineering Design (FEED) and procurement. Industrial scale (≈ 1–20 MWh) and utility scale.

 

Our independent engineering approach ensures your asset is optimized for maximum lifecycle value and strict grid compliance. By bridging the gap between volatile energy markets and physical deployment, we turn complex energy storage concepts into bankable infrastructure.

Techno-Economic Sizing & Simulation

We don’t believe in one-size-fits-all solutions. Our engineering process begins with data-driven sizing of the Battery Energy Storage System against your exact operational profile. We run advanced simulation models to determine the optimal battery chemistry, capacity, and power ratings. 

Financial Architecture & Revenue Stacking

A successful BESS project requires a rock-solid business case. We build sophisticated, multi-year financial models that forecast cash flows against volatile energy market prices. Our expertise lies in designing “revenue stacking” frameworks combining behind-the-meter savings with front-of-the-meter grid service revenues.

FEED & Technical Engineering Design

We transition the conceptual battery model into concrete, buildable engineering blueprints. Our team delivers thorough Front-End Engineering Design (FEED), covering electrical single-line diagrams, thermal management integration, safety protocols, and physical site layouts. 

Vendor-Neutral Procurement & Delivery

We act as your independent technical partner during the execution phase. Because we are completely vendor-neutral, we manage the procurement and tender processes to select the highest-quality cells, inverters, and Energy Management Systems (EMS) at the best market value.

our solutions

Service Deliveries

Detailed simulation reports defining battery capacity (MWh), power ratings (MW), and lifecycle degradation curves against real-world load profiles.

Bankable cash flow models mapping behind-the-meter savings and multi-market grid revenues alongside structured project funding logic.

Front-End Engineering Design including electrical single-line diagrams (SLDs), physical layout optimizations, and utility code compliance documentation.

Independent technical tender evaluations of Tier-1 manufacturers, component risk matrices, and final quality assurance commissioning audits.