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AINEGY 500kW-Class Containerized Hybrid Power Platform

AINEGY 500kW/1MWh Solar-Diesel BESS Container

Liquid Cooling · 480kW PV Input · 4 MPPT Channels · Expert EMS · Integrated ATS · Generator Port

High-capacity energy storage built to turn solar, battery reserve, grid supply and diesel generation into one coordinated power strategy.

The AINEGY 500kW/1MWh Solar-Diesel BESS Container integrates a 1MWh LiFePO4 battery system, 500kW PCS, 480kW PV MPPT input, expert EMS, integrated ATS and diesel generator interface for remote industrial, weak-grid and critical C&I power projects.

500kW / 1MWhHigh-capacity power and energy reserve for larger hybrid energy projects.
480kW PV InputFour MPPT channels for large solar array integration.
Expert EMSDynamic coordination of PV, battery, grid, generator and site demand.
Integrated ATSBuilt-in source switching architecture for hybrid microgrid operation.
<20ms SwitchingFast grid-connected and off-grid operating transition capability.
Up to 3 Units ParallelScalable deployment for larger power and energy requirements.

Integrated 500kW/1MWh Power for Demanding Energy Sites

Large remote and industrial sites need more than stored electricity. They need a power platform that can absorb solar generation, carry meaningful battery reserve, react to changing loads and bring diesel support into the energy strategy only when it is needed.

AINEGY combines battery storage, 500kW bidirectional power conversion, 480kW PV input, energy management, source switching, generator access, liquid cooling and remote communication in one factory-integrated BESS container.
1MWh LiFePO4 Storage500kW PCS480kW PV Input4 MPPT ChannelsExpert EMSIntegrated ATSGenerator PortLiquid Cooling
Solar Utilization

Put More Available PV Into the Site Energy Strategy

Up to 480kW of PV input gives large solar arrays a direct path into battery charging and hybrid site operation.

Energy Reserve

1MWh of Battery Capacity for Larger Loads

The 1MWh LiFePO4 platform gives remote and industrial sites more operating flexibility between solar availability, load demand and generator support.

Hybrid Dispatch

Use Diesel as a Managed Resource

Generator support can be coordinated with PV and battery energy instead of remaining the default source for every operating hour.

Project Scale

Built for Higher-Capacity Microgrid Projects

500kW power, 1MWh storage and three-unit parallel capability create a clear expansion path for larger sites.

AINEGY Engineering and Quality Support

From BMS and EMS development to lithium battery integration, PCS technology, factory testing and international project delivery, AINEGY builds containerized energy storage around system-level engineering rather than loose equipment assembly.

15+

Years of BMS / EMS Technology Accumulation

Long-term development of battery-management and energy-management technologies for lithium battery systems.

80+

R&D Team Members

Engineering support across BMS, EMS, inverter technology, battery integration and customized energy storage systems.

120+

Countries and Regions

International project exposure across different grid, generator, voltage, communication and environmental conditions.

2500MWh+

Cumulative Battery Shipment

Manufacturing and delivery experience supporting repeatable battery integration and international project execution.

Factory Integration

One Platform Before It Reaches the Site

Battery, PCS, EMS, MPPT, ATS, generator interface, cooling and communication are integrated as one product platform.

System Testing

Test the Energy Interfaces, Not Only the Battery

Factory testing covers battery operation, PCS response, MPPT input, EMS communication, source switching and generator-side interfaces.

Project Engineering

Configured Around the Real Site Load

Load profile, PV size, generator rating, motor loads, critical-load duration and site conditions are reviewed before final project configuration.

500kW/1MWh Solar-Diesel BESS Container Technical Specifications

Model IYP-CB1ML-500H3S-480M4-HX1 combines 1MWh LiFePO4 storage, 500kW on-grid and off-grid power, 480kW PV input and diesel generator access in a liquid-cooled containerized platform.

ItemSpecification
ProductAINEGY 500kW/1MWh Solar-Diesel BESS Container
ModelIYP-CB1ML-500H3S-480M4-HX1
Battery System
Battery ChemistryLiFePO4 Battery
Rated Energy1MWh
Nominal Voltage832V
Rated Capacity1256Ah
Battery Cooling MethodLiquid cooling
PV Input
Maximum PV Power480kW, 4 channels
Maximum PV Voltage950Vdc
MPPT Voltage Range250–850Vdc
Maximum PV Input Current200A + 200A + 200A + 200A
MPPT Channels4
AC On-grid
Rated Power500kW
AC Voltage400Vac / 230Vac, L1 / L2 / L3 / N / PE
Rated Frequency50Hz / 60Hz
Maximum AC Current750A
AC Off-grid
Rated Power500kW
AC Voltage400Vac / 230Vac, L1 / L2 / L3 / N / PE
Rated Frequency50Hz / 60Hz
Maximum AC Current750A
On/Off-grid Switching Time<20ms
Maximum Parallel Quantity3 units
Microgrid and General Data
Integrated ArchitectureLiFePO4 Battery / BMS / PCS / Expert EMS / MPPT / Integrated ATS / Generator Port
Diesel Generator PortYes
CommunicationRS485 / Ethernet / 4G
Battery Protection RatingIP65
Operating Temperature-10°C to 55°C
Relative Humidity5% to 95%
Altitude<2000m
PCS Cooling MethodIntelligent cooling
Dimensions2991 × 2438 × 2896mm
Approximate WeightAbout 10500kg

Load Profile

  • Hourly or 15-minute load data
  • Peak and average site demand
  • Critical and non-critical load separation
  • Required operating reserve

PV Design

  • PV capacity and expected production profile
  • String voltage within the MPPT range
  • Maximum PV voltage below 950Vdc
  • Input current across four MPPT channels

Generator Data

  • Generator rated and standby power
  • Minimum stable operating load
  • Step-load response and overload capability
  • Controller and communication interface

Industrial Load Checks

  • Motor and compressor starting current
  • VFD or soft-start configuration
  • Power factor and reactive demand
  • Load sequencing and three-phase balance

Reduce Diesel Dependence Without Giving Up Power Resilience

At remote and weak-grid sites, the real operating challenge is deciding when solar is enough, when battery reserve should be used and when generator support becomes necessary. AINEGY brings these energy sources into one coordinated operating strategy.

480kW PV Input

Capture Large Solar Production

Four MPPT channels give larger PV arrays direct access to the energy platform for load supply and battery charging.

1MWh Battery Reserve

Move Energy Across Changing Site Conditions

Battery reserve bridges solar variation, changing load demand and periods before generator support is required.

Generator Coordination

Reduce Unnecessary Generator Hours

In a properly sized project, available PV and stored energy can carry part of the site demand before fuel-based generation is required.

500kW Off-grid Output

Support Larger Standalone Power Loads

The 500kW PCS supports substantial off-grid load requirements when the project is engineered around actual load behavior.

Fast Transition

Respond Quickly to Grid Operating Changes

On/off-grid switching below 20ms supports fast transition between configured operating conditions.

Parallel Expansion

Scale Beyond One Container

Up to three units can be engineered in parallel as project power demand, energy reserve or renewable capacity grows.

AINEGY 500kW 1MWh BESS Container PV battery grid diesel hybrid microgrid system operation diagram

PV–Battery–Grid–Diesel System Operation

Solar generation, 1MWh battery storage, 500kW PCS output, utility supply and diesel generation are connected through a coordinated energy architecture. AINEGY EMS provides operating intelligence, while integrated source switching supports the configured site power path.

Solar PV Up to 480kW PV input is connected through four MPPT channels for battery charging and hybrid site operation.
1MWh Battery LiFePO4 storage provides energy reserve between changing renewable production, load demand and generator support.
500kW PCS Bidirectional power conversion supports on-grid and off-grid operation at 400Vac / 230Vac.
Grid + Generator Utility power and diesel generation can participate in the operating strategy according to site conditions and EMS configuration.
Priority Loads Critical loads can be defined during project engineering so battery reserve and generator support are directed toward selected site loads.

AINEGY Expert EMS and Integrated ATS

A high-capacity BESS container creates more value when every energy interface is visible and controllable. AINEGY EMS follows real-time operating status and dynamically coordinates how solar, stored energy, grid supply and diesel generation participate in the power system.

AINEGY Expert EMS + Integrated ATS
PV Input480kW / 4 MPPT
Battery SOC1MWh reserve
PCS Output500kW AC
Grid StatusAvailability and power flow
GeneratorSupport and recharge
Integrated ATSSource switching
Critical LoadsPriority demand
CommunicationRS485 / Ethernet / 4G
Parallel UnitsUp to 3 containers

Dynamic Energy Dispatch for Real Site Conditions

AINEGY EMS monitors PV production, battery SOC, PCS operating status, grid availability, generator status and load demand. The configured control strategy coordinates source priority and battery use according to current operating conditions.

Solar Priority Use available PV energy for local demand or battery charging when system conditions allow.
SOC Strategy Maintain a defined battery reserve instead of using stored energy without regard for priority-load requirements.
Generator Support Coordinate generator power for sustained demand, low-solar periods or battery recovery according to project strategy.
Source Switching Integrated ATS coordinates source transfer within the configured grid, generator, BESS and load architecture.

Application Scenarios for AINEGY 500kW/1MWh Solar-Diesel BESS Container

Designed for larger remote and C&I sites where diesel logistics, unstable grid conditions, high daily energy demand and critical operating loads directly affect project cost and power reliability.

AINEGY 500kW 1MWh BESS container applications for oil and gas mining islands industrial facilities and remote infrastructure
Oil & Gas Sites

Reduce Fuel-Dependent Operation at Remote Energy Sites

Oilfield pads, camps and remote energy infrastructure need reliable electricity for pumps, controls, communications, lighting and auxiliary loads.

480kW PV access, 1MWh battery reserve and generator coordination help move more daily energy demand away from continuous diesel operation.

Mining Operations

Hybrid Power for Remote Industrial Loads

Mines and quarries may operate far from strong grid infrastructure while supporting pumps, ventilation, control systems, lighting and selected processing loads.

The 500kW platform gives the project a larger battery and power buffer between renewable generation, industrial demand and generator support.

Islands & Remote Communities

Use More Solar Before Imported Fuel

Island power systems often face high fuel transport cost and long daily generator operating hours.

AINEGY helps absorb solar generation into the local power system and use battery energy before diesel support becomes necessary.

Hospitals & Critical Facilities

Coordinate Multiple Sources Around Essential Facility Loads

Critical facilities need a clear strategy for utility supply, battery reserve and generator-supported operation.

Expert EMS and integrated ATS support facility-level source coordination when the BESS is engineered into the compliant site electrical architecture.

Factories & Industrial Parks

High-Capacity Energy Support for Industrial Sites

Factories can face changing production demand, grid instability and large motor or equipment loads.

500kW bidirectional conversion and 1MWh battery reserve create a flexible energy layer between the site, solar generation and generator resources.

Remote Infrastructure

Containerized Energy for Distributed Power Projects

Infrastructure hubs, logistics parks, construction bases and pumping stations need scalable power with remote operating visibility.

Containerized integration, 4G communication and multi-unit expansion support distributed projects that may grow after initial deployment.

Engineering FAQ and RFQ Readiness

Project selection for a 500kW/1MWh BESS container should start with actual load behavior, solar production, generator characteristics and required operating reserve—not battery capacity alone.

What is the AINEGY 500kW/1MWh Solar-Diesel BESS Container designed for?

It is designed for larger remote, weak-grid and C&I sites that need PV integration, meaningful battery reserve, 500kW power conversion and coordinated generator support in one containerized energy platform.

How does the EMS coordinate solar, battery and diesel generation?

AINEGY EMS monitors PV input, battery SOC, PCS operation, grid availability, generator status and load demand, then coordinates energy flow according to the configured project strategy.

Can the 500kW/1MWh BESS container operate off-grid?

Yes. The product is rated for 500kW off-grid output and supports on/off-grid switching below 20ms. Load starting current, motor characteristics and simultaneous demand still need engineering review.

Can this BESS container reduce diesel generator runtime?

Yes, when the site is properly sized. Available PV and battery energy can carry part of the load before generator support is required, reducing unnecessary generator operating hours.

How long can 1MWh support the site load?

Runtime depends on usable battery energy, SOC reserve, load demand, PV production and generator strategy. A 100kW priority load and a 450kW industrial load require very different operating calculations.

Why use liquid cooling in a 1MWh BESS container?

Liquid cooling provides a more direct heat-transfer path around battery modules and is designed to support better thermal consistency during repeated charging and discharging in a dense high-capacity battery system.

When should multiple 500kW/1MWh containers be used?

Parallel deployment should be considered when one container cannot meet the site's power demand, battery reserve requirement or renewable charging strategy. The specification supports up to three units in parallel.

What should be sent to AINEGY before quotation?

Send the load profile, peak demand, critical-load list, PV module and string data, generator specification, required backup duration, grid voltage, motor-starting data, ambient temperature, altitude, communication requirements and site layout.

Configure Your 500kW/1MWh BESS Container with AINEGY

Send your load profile, PV design, generator specification, motor-starting data, critical-load list, required reserve time and site conditions. AINEGY will review the 500kW power requirement, 1MWh battery reserve, 480kW PV input, EMS strategy, integrated ATS operation and parallel expansion path for your project.