Energy Storage Resources
Practical knowledge, system-planning guidance and technical documents for battery energy storage projects.
Understand BESS power, battery capacity, system architecture, application requirements and the information needed to prepare a project proposal.

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Visit the NewsroomUnderstand Battery Energy Storage Systems
Start with the technical factors that determine BESS power, battery capacity, product platform and operating strategy.
Power, Energy and C-Rate
kW describes system power. kWh describes stored energy. C-rate describes the relationship between battery capacity and charge or discharge power.
Learn About kW, kWh and C-Rate System SizingBESS Sizing
BESS sizing depends on peak power, energy demand, backup duration, grid capacity, solar generation, battery reserve and system losses.
Learn How BESS Is Sized ArchitectureSystem Architecture
A project may use an AC-coupled, DC-coupled, grid-connected, hybrid or islandable architecture depending on its energy sources and operating requirements.
Compare BESS Architectures System ComponentsCore System Components
The battery stores energy, the PCS converts power, the BMS protects the battery and the EMS coordinates system operation.
Understand BMS, PCS and EMS Product PlatformProduct Platform
Integrated cabinets, energy cabins and containerized systems serve different power ranges, installation environments and project-expansion requirements.
Compare BESS Product Platforms Safety & StandardsSafety and Standards
Battery, system, installation and fire-safety requirements must be evaluated according to the product configuration, project location and local approval process.
Review Energy Storage SafetyEnergy Storage Resources by Application
Choose the application closest to your project and review the main operating objective and project inputs.

Commercial & Industrial Energy Storage
For peak shaving, solar self-consumption, demand management and site power-capacity support.

Hybrid Microgrid & Remote Power
For projects combining solar, batteries, generators and utility power in weak-grid or off-grid environments.

EV Charging Energy Storage
For fast-charging sites where charging demand may exceed the available grid connection.

Critical Load Backup & Energy Resilience
For selected loads that must continue operating during grid interruptions.

Residential & Community Energy
For home solar storage, household backup, modular batteries and shared residential energy systems.
Featured Technical Guides
Start with four practical guides covering the core technical decisions in battery energy storage projects.
BESS kW, kWh and C-Rate Explained
Understand power, stored energy and charge or discharge rate before comparing BESS products.
Read Guide Technical GuideHow to Size a Battery Energy Storage System
Relate load, energy demand, operating duration and project constraints to BESS power and capacity.
Read Guide Technical GuideAC-Coupled vs DC-Coupled Battery Storage
Compare energy flow, equipment boundaries and the project conditions suited to each architecture.
Read Guide Technical GuideAir-Cooled vs Liquid-Cooled BESS
Understand how power density, climate and lifecycle requirements influence cooling-system selection.
Read GuidePrepare Your Energy Storage Project
Send your load profile, grid capacity, solar generation, generator information, operating requirements and site conditions for an initial BESS assessment.