Site and Application Review
Confirm project objective, electrical environment, loads, required operating modes and the AINEGY product family that supports them.
AINEGY combines battery storage, EMS, PCS, PV, diesel generation, ATS / STS and project-specific control to deliver measurable energy value, grid-forming microgrid operation, black start, fast source transfer and high-power EV charging across different product platforms.
Multi-Source Energy Coordination Choose the closest operating condition first. AINEGY then matches the project with the product family that provides the required energy value, transfer performance, grid-forming capability, charging power and system control.
For factories and commercial sites evaluating peak-demand reduction, solar self-consumption and a typical project payback target of approximately 3–7 years under suitable tariff conditions.
Commercial & Industrial Energy Storage → 02For projects requiring grid-forming operation, black start and coordinated PV, BESS, diesel generator and optional grid control.
Hybrid Microgrid & Remote Power →03For remote and off-grid sites using AINEGY microgrid cabinets or containers with 1C power capability, independent AC-bus establishment and prioritized load startup.
Remote and Off-Grid Architecture →04For stations and fleets requiring battery-buffered charging, integrated EMS / ATS and dynamic allocation of total charging power across multiple guns.
EV Charging Energy Storage →05For critical loads requiring configured SOC reserve, load priority and supported AINEGY product configurations with transfer times below 20ms.
Critical Load Backup & Resilience →AINEGY does not apply one function set to every system. Grid-connected C&I cabinets, hybrid cabinets, grid-forming microgrid products, EV charging systems and critical-power configurations are matched to different site objectives.

Reduce peak demand, increase solar self-consumption and evaluate electricity-cost savings through load-profile and tariff analysis. Suitable projects commonly target approximately 10–30% peak-demand reduction and 3–7 year payback.
Explore C&I Solution →
AINEGY solar-diesel-BESS microgrid cabinets and containers support grid-forming operation, black start, 1C power and multi-source control. Properly sized projects commonly target approximately 20–40% diesel-fuel reduction.
Explore Hybrid Microgrid Solution →
Coordinate available grid capacity, local battery energy and charging demand. AINEGY platforms include battery-integrated chargers and a 480kW total four-gun charging BESS container with dynamic power allocation, integrated EMS and ATS.
Explore EV Charging Solution →
Match critical-load power, backup duration, SOC reserve and transfer requirements with the correct AINEGY hybrid or microgrid product. Supported configurations provide fast on-grid / off-grid transfer below 20ms.
Explore Critical Power Solution →Explore AINEGY residential battery systems for solar self-consumption, household backup and off-grid home energy applications. Functions are matched to the selected battery and inverter product family rather than applied uniformly across all residential models.
Explore Residential Solutions
Capabilities differ by AINEGY product family. “Core,” “selected series” and “optional” identify where each function belongs instead of implying that every model provides the same operating modes.
| Solution | Grid | PV | Diesel | BESS | EMS | ATS / STS | Grid-Forming | Black Start | Fast Transfer | EV Charging |
|---|---|---|---|---|---|---|---|---|---|---|
| Commercial & Industrial | Typical | Optional | Optional | Core | Core | Selected Hybrid Series | Selected Hybrid Series | Selected Series | <20ms Selected Series | Optional |
| Hybrid Microgrid | Optional | Core | Core | Core | Core | Core | Core | Core | <20ms | Optional |
| EV Charging Storage | Typical | Optional | Optional | Core | Core | Integrated on 480kW Platform | By Product Series | By Product Series | By Product Series | Core |
| Critical Load Backup | Core | Optional | Optional | Core | Core | Core | Selected Microgrid Series | Selected Microgrid Series | <20ms Supported | Optional |
The engineering process combines technical capability matching with savings, fuel and payback analysis so the recommended product is connected to measurable project value.
Confirm project objective, electrical environment, loads, required operating modes and the AINEGY product family that supports them.
Review load profile, charging demand, PV generation, generator operation, outage history and existing grid limitations.
Determine kW, kWh, usable duration and preliminary savings or payback using tariffs, fuel cost, system dispatch and project assumptions.
Define grid-following or grid-forming operation, black start, source transfer, load priority and PV-diesel-BESS coordination.
Select the product model and verify supported C-rate, transfer time, EMS, ATS / STS, charging functions and protection configuration.
Prepare the agreed technical documents, manufacturing tests, delivery requirements and commissioning support scope.
Technical and economic inputs are reviewed together. This allows AINEGY to calculate system size, operating strategy, savings potential and the correct product capability set.
AINEGY product families are designed for different duties. The capabilities below are assigned to the corresponding C&I, hybrid microgrid, EV charging or critical-power product series.
Use PV to support site loads and charge the BESS according to the configured energy-management strategy.
C&I and hybrid systemsDischarge during high-load periods to reduce measured grid demand and support transformer or grid-import limits.
Typical 10–30% potentialAINEGY solar-diesel-BESS microgrid cabinets and containers establish and regulate the local AC voltage and frequency reference.
Microgrid product seriesStart the local AC bus without an existing utility voltage reference, then energize auxiliary and prioritized loads in sequence.
Microgrid product seriesSupported hybrid and critical-power configurations provide fast on-grid / off-grid source transfer for compatible project loads.
Supported product seriesMatching AINEGY microgrid products support high charge and discharge power for load pickup, source coordination and black-start operation.
1C-capable systemsEMS coordinates PV output, generator dispatch, battery SOC and site loads to improve renewable use and reduce diesel operation.
20–40% diesel reduction potentialHybrid microgrid products operate with or without the utility grid according to the configured source and load-control strategy.
Hybrid microgrid systemsAllocate the available total charging power among active charging guns instead of treating total station power as per-gun power.
Four-gun 480kW platformMaintain a configured battery-energy reserve for critical loads while balancing daily energy-management objectives.
Critical-power configurationsDifferent products serve different operating duties. The final model is selected from the capability requirements rather than assuming one universal function set.
Grid / PV / Facility Loads
PV / Diesel / Optional Grid / Loads
Grid / PV / BESS / EV Charging
Grid / BESS / ATS or STS / Critical Loads
High-performance functions such as 1C operation, black start and fast source transfer must be integrated with the battery, PCS, switchgear, EMS, thermal management and protection architecture of the selected product.
Confirm cell, module, rack and system monitoring, protection thresholds, SOC management and communication for the selected product.
Select air or liquid cooling according to product platform, 1C duty requirements, ambient conditions and project operating profile.
Confirm PCS, switchgear, isolation, grounding and protection coordination for grid-connected, off-grid and source-transfer operation.
Use the fire-protection configuration specified for the selected product and confirm local installation requirements.
Validate grid-forming logic, black-start sequence, transfer performance, generator synchronization and project communication interfaces.
Confirm the agreed functional tests for operating modes, charging paths, transfer logic, alarms and system communication before shipment.
Product certifications and applicable installation standards vary by model and target market. Capability claims are assigned to the corresponding AINEGY product series, while final market compliance is confirmed against the selected model and installation design.
Suitable C&I projects commonly evaluate approximately 10–30% peak-demand reduction and a typical payback target of about 3–7 years.
Properly sized PV-diesel-BESS microgrids commonly target approximately 20–40% diesel-fuel reduction.
AINEGY can prepare preliminary savings and payback calculations using the customer's project inputs.
Technical resources should explain both the system capability and the commercial basis used to evaluate an energy storage project.
Separate required power, usable energy, operating duration and reserve capacity.
Read Technical Resources →Connect tariff savings, demand reduction, cycling strategy and system cost.
Read Technical Resources →Understand how a microgrid establishes voltage and frequency during off-grid operation.
Read Technical Resources →Review AC-bus establishment, auxiliary power and prioritized load-starting sequence.
Read Technical Resources →Review source transfer, compatible loads and the roles of PCS, ATS and STS.
Read Technical Resources →Understand how PV, battery SOC and generator dispatch affect diesel consumption.
Read Technical Resources →Review grid contribution, battery contribution and dynamic charging-power allocation.
Read Technical Resources →Compile technical and economic data for system sizing and preliminary ROI analysis.
Submit Project Data →Suitable projects commonly evaluate approximately 10–30% peak-demand reduction. Typical payback targets are often around 3–7 years, depending on tariff structure, load profile, battery cycling, incentives and installed project cost.
Properly sized PV-diesel-BESS microgrids commonly target approximately 20–40% diesel-fuel reduction. Actual performance depends on solar resource, generator efficiency, minimum generator loading, battery size, SOC strategy and site loads.
Yes. AINEGY solar-diesel-BESS microgrid integrated cabinets and containers provide grid-forming operation and black-start capability, allowing the system to establish a local AC voltage and frequency reference and start configured loads in sequence.
Supported AINEGY hybrid and critical-power configurations provide on-grid / off-grid transfer times below 20ms. The load type and selected PCS, ATS or STS configuration are matched during project design.
A 1C-capable battery system can deliver high charge or discharge power relative to its energy capacity. In AINEGY microgrid products, this supports load pickup, source coordination, fast response and black-start operation.
Yes. AINEGY hybrid microgrid products integrate BESS, EMS, PCS, PV input, diesel-generator coordination and optional grid input within one control architecture.
Sizing considers total station power, simultaneous charging demand, vehicle schedule, grid capacity, PV generation and battery usable energy. The AINEGY 480kW four-gun platform dynamically allocates 480kW total charging power across four active interfaces.
No. Grid-connected C&I cabinets, hybrid C&I cabinets, grid-forming microgrid cabinets and containers, EV charging systems and residential products have different functions. The solution page maps each project to the product family that provides the required capability.
Send your load profile, electricity tariff, grid conditions, PV data, generator fuel information, charging demand, required transfer time, backup duration and installation environment. AINEGY will match the project with the correct product capabilities and prepare a preliminary system and value assessment.