EV Charging + Storage visual

EV Charging + Storage

LVK Battery Storage paired with EV charging stations reduces demand charges, supports fast charging, and improves grid stability.

  • Reduce demand charge & peak load
  • Support DC fast charging
  • Improve grid stability
  • Integrate with solar canopy

Core Advantages

  • Peak Shaving

    Smooth demand spikes caused by simultaneous EV fast charging sessions.

  • Fast Charging

    Supports high-power DC fast charging without grid upgrade.

  • Smart Dispatch

    AI-driven EMS optimizes charging schedule based on tariff and load.

  • Reliable Backup

    Keep chargers online during grid outages for revenue continuity.

System Architecture

Grid
EMS
Energy Storage Cabinet
EV Charger
Solar Canopy

How It Works

When multiple EVs charge at peak hours, the BESS discharges to support the chargers and avoid demand spikes. Off-peak or solar excess charges the battery.

  1. Charger Demand

    Multiple EVs plug in and request high power simultaneously.

  2. Battery Discharge

    The BESS discharges to supplement grid power, capping demand peaks.

  3. Solar / Off-peak Charge

    Solar or off-peak grid energy refills the BESS for the next cycle.

  4. Lower TCO

    Reduce demand charges and avoid grid upgrade costs.

Value Delivered

  • 30-50% Reduce demand charge on EV charging sites.
  • 120kW+ DC fast charging supported without grid upgrade.
  • 99.9% Charger uptime even during grid events.
  • CO₂ Pair with PV for low-carbon EV charging.

Project Cases

  • Integrated Solar-Storage-Charging Project at a Logistics Park in Jakarta, Indonesia

    Integrated Solar-Storage-Charging Project at a Logistics Park in Jakarta, Indonesia

    Jakarta, Indonesia

    Capacity: 522 kWh

    Result: Green charging costs for the logistics fleet were reduced by 45%.

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  • 2088kWh Multi-Tenant Industrial Park Capacity Optimization Project in Nairobi, Kenya

    2088kWh Multi-Tenant Industrial Park Capacity Optimization Project in Nairobi, Kenya

    Nairobi, Kenya (outskirts industrial park)

    Capacity: 2088 kWh

    Result: Successfully achieved a virtual expansion of available grid capacity by 35%.

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  • 1044kWh Solar-plus-Storage Project for a Large Cold Chain Warehouse in Cape Town, South Africa

    1044kWh Solar-plus-Storage Project for a Large Cold Chain Warehouse in Cape Town, South Africa

    Cape Town, South Africa (suburbs)

    Capacity: 1044 kWh

    Result: Reduced the cold chain center's base electricity costs by 52%.

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