홈 Technology Core Tech

Core Tech

Mobile ESS Technology

Integrated Power Platform for Mobile Energy Systems

Mobile ESS

Mobile ESS
Module / Rack / System Architecture Scalability (Parallel Expansion Capable) Control Logic Diagram

Technology Overview

A mobile energy system that mounts battery storage on vehicles or mobile platforms, allowing power to be stored, supplied, and managed wherever it's needed.

Power Supply Without Location Constraints
Minimized Installation & Removal Costs
Generator Replacement Capability
Flexible Emergency & Peak Response

Power Supply Without Location Constraints

Instant on-site power without grid connection — ideal for construction sites, events, disasters, remote areas, and temporary hubs.

Minimized Installation & Removal Costs

No infrastructure work required compared to stationary ESS; relocatable and reusable when needed, maximizing CAPEX efficiency.

Generator Replacement Capability

No noise, emissions, or fuel management issues — suitable for eco-friendly use in urban areas and at night.

Flexible Emergency & Peak Response

Instantly deployable for power outages, disasters, and peak loads; a single system can be rotated across multiple sites.

Components

Mobile ESS Components

Technical
Differentiators

aeonus Next-Generation Power Conversion (PCS) Solution, "The Core of Intelligent Power Grids: A Fusion of Grid-Forming Technology and Modular Design"

이온어스 PCS 연결 토폴로지
Core Innovation

Grid-Forming & Black Start

  • aeonus's PCS goes beyond simply following the grid (Grid-following) and incorporates Grid-forming technology that actively shapes the power grid itself.
  • During wide-area blackouts, the Virtual Synchronous Machine (VSM) algorithm generates independent voltage and frequency references, enabling Black Start to restart a downed grid without external inertia — and fully replacing diesel generators to build an independent microgrid.
Independent Power Source Microgrid Anchor
Scalability

20kW/30kW Modular Design

  • A universal modular platform designed for free combination based on application.
  • By combining 20kW/30kW bidirectional DC-AC inverter modules and DC-DC converter modules, the system scales linearly from small-scale events to large industrial applications of 1MW+ — and 1+N redundancy design maximizes on-site availability.
Hot-Swappable Selective Scalability
Future Growth

V2G & LVDC Optimization

  • Direct DC-DC coupling technology eliminates unnecessary AC-DC conversion stages, achieving 3–18% energy efficiency gains.
  • Bidirectional power control supporting the ISO 15118 standard enables a V2G hub role.
  • Minimizing conversion losses in low-voltage DC (LVDC) systems, the platform delivers an optimized solution for next-generation DC-based infrastructure such as data centers and smart factories.
V2G LVDC

Safety / Reliability Design

Environmental Test
(Heat, Humidity, Rain,
Dust)

Mechanical Safety
(Vibration, Shock, Fixation)

Electrical Safety
(Insulation, Withstand Voltage,
Grounding, Leakage)

EMC / EMI Test

Fire Response Test

Applications

  • 1. Disaster & Emergency Power Supply

  • 2. Industrial & Construction Sites

  • 3. Events, Performances & Broadcasting

  • 4. Telecom & IT Infrastructure (Backup, Temporary Networks)

  • 5. Public & Government Sector (Emergency, Events, Carbon Reduction)

  • 6. Commercial Services (Food Trucks, Mobile Clinics)

  • 7. Research & Training (Field Testing, Disaster Drills)

  • 8. Special Environments (Urban, Residential, Tunnels)

Applications