Case Studies

522kWh Green Power Microgrid Project for a High-End Residential Community in Riyadh, Saudi Arabia

A 522kWh LVK C&I BESS with two 120kW MPPT controllers DC-coupled to a 300kW communal solar carport, providing 100% round-the-clock green power to a high-end Riyadh villa community.

Location Riyadh, Saudi Arabia (outskirts)
Application Communal Solar-Storage Microgrid
System Size 522 kWh
Capacity 522 kWh
Power 240 kW (2x 120kW MPPT)
Commissioning Time Q3 2026
Battery Type LiFePO4
Application Type Communal Solar-Storage Microgrid
Delivery Model Turnkey EPC + EMS

Project Overview

Project Background

A 522kWh LVK C&I BESS with two 120kW MPPT controllers DC-coupled to a 300kW communal solar carport, providing 100% round-the-clock green power to a high-end Riyadh villa community.

Customer Needs

The high-end community aims to set a benchmark for zero-carbon, green living. However, during summer afternoons, when household air conditioning usage peaks, the local public grid occasionally experiences brief voltage instability due to high loads, disrupting the smart management of the community's high-end clubhouse and security systems.

Application Focus

Communal Solar-Storage Microgrid

Solution Design

Integrated ESS Design For Site Operations

An LVK 522kWh energy storage cabinet was installed, incorporating two 120kW MPPT controllers that enable DC-level coupling with the centralized solar carport, creating a highly reliable solar-plus-storage public power supply network.

Energy Storage 522 kWh
Power Conversion 240 kW (2x 120kW MPPT)
EMS Control Turnkey EPC + EMS
Battery Safety LiFePO4
522kWh Green Power Microgrid Project for a High-End Residential Community in Riyadh, Saudi Arabia solution equipment

System Architecture

Coordinated Power Flow

522 kWh BESS + 2x 120kW MPPT + 300kW Communal Solar Carport (DC-coupled)

Energy Source BESS + PV (DC-coupled)
EMS Monitoring & dispatch
Battery Cabinet 522 kWh
Site Load Communal Solar-Storage Microgrid
DC AC Communication Power Flow

Results & Benefits

Project Outcomes

100%

The community's public areas achieve 100% round-the-clock, uninterrupted green energy supply.

6%

By eliminating intermediate inverter conversion stages, the overall charging efficiency from the solar carport to the battery has increased by approximately 6%.

3.5 years

The estimated payback period (ROI) is 3.5 years.