
Xinjiang, China
Project Scale:
Current Scale: 22 units of 120kW Motion Fast DC chargers have been deployed across 7 sites, equipped with a 200kWh energy storage system and supporting solar carports.
Long-Term Plan: The project is slated to expand to 27 sites with a total deployment of nearly 400 chargers, over one-third (>130 units) of which will be 120kW fast-charging stations.
Project Products:
Livoltek MotionFast DC Charging Station

Project Details:
Tailored to Xinjiang Huyang City’s abundant solar resources and its unique extreme climate—with an annual average temperature of 6.5°C, extremes ranging from -27.7°C to 42.4°C, and sharp diurnal temperature variations—this project innovatively deploys an integrated “PV-storage-charging” comprehensive energy station. Phase I features demonstration units across 7 sites, combining solar carports, battery energy storage systems, and 120kW DC fast chargers. Powered by an intelligent Energy Management System (EMS), the setup optimizes self-consumption of PV generation, surplus power storage, off-peak load shifting, and rapid, stable green power delivery for electric vehicles. The entire system architecture is engineered to guarantee equipment stability and operational efficiency under severe temperature fluctuations.

Customer Pain Points:
Extreme Environmental Challenges: Xinjiang’s bitter cold, scorching summer heat, and dramatic diurnal temperature swings pose a rigorous test to the stability, reliability, lifespan, and operational efficiency of charging infrastructure and other energy equipment.
Infrastructure Deficit and Strategic Layout Needs: As New Energy Vehicle (NEV) adoption accelerates, public charging networks face gaps in coverage and a low proportion of fast-charging options, lagging behind user demands for speed and convenience.
Demonstration & Replicability Requirements: There is a critical need to build a verifiable, highly visible, and scalable sustainable transport-energy solution model capable of thriving under unique geographical and climatic conditions.
Project Value:
Proven Adaptability to Extreme Environments: It successfully validates the robustness, reliability, and high efficiency of LIVOD’s turnkey solutions under harsh climatic conditions, providing a critical empirical case study for replicating green infrastructure across extreme cold and high-heat regions.
Building a Stable and Efficient Green Microgrid: Through the “PV + Storage” synergy, the project achieves localized production, buffer storage, and intelligent dispatch of clean energy. This mechanism not only smooths grid fluctuations and lowers electricity costs but also secures a stable energy supply for charging services.
Accelerating Regional Green Transportation: By directly planning and deploying a large-scale, high-efficiency charging network (featuring 120kW fast chargers), the project effectively alleviates charging anxieties, driving local adoption of new energy vehicles and the transition to green mobility.
Enhancing Integrated Energy Efficiency: The intelligent EMS achieves synergistic optimization across PV, storage, charging, and the grid, maximizing the consumption of green PV power while boosting both the economic viability and environmental benefits of the entire energy system.
High Demonstration Value & Strategic Scalability: This project establishes a benchmark that integrates technological validation, operational demonstration, and ecological synergy. Beyond serving the local community, it acts as a “lighthouse” for LIVOD’s solutions in specialized markets, carrying immense industry influence and replication potential.





