Combine photovoltaic (PV), battery energy storage, utility grid, diesel generators, and EV charging into a single coordinated energy ecosystem. Intelligent energy dispatch continuously selects the most appropriate power source, ensuring reliable operation while maximizing renewable energy utilization and minimizing operating costs.
Automatically switch between solar, battery storage, diesel generation, and grid power in milliseconds without power interruption or noticeable voltage fluctuations. Critical equipment continues operating smoothly even during sudden load changes or utility outages.
From commercial EV charging stations and fleet depots to construction sites, mining operations, islands, and emergency response projects, Injet delivers dependable power wherever conventional grid infrastructure is unavailable, unstable, or prohibitively expensive.
Unlike conventional energy management systems designed primarily for stable commercial buildings, Injet's self-developed EMS is specifically optimized for demanding operating environments with continuously changing loads, intelligently coordinating energy generation, storage, and consumption in real time.
The system continuously analyzes battery status, PV generation, grid availability, diesel operation, equipment loading, and energy demand to optimize power allocation automatically. This intelligent scheduling improves renewable energy utilization, reduces fuel consumption, extends battery life, and maximizes overall system efficiency.
The integrated cloud platform provides real-time equipment monitoring, remote commissioning, parameter adjustment, fault diagnostics, historical data analysis, and predictive maintenance. Advanced algorithms identify potential issues before failures occur, reducing on-site service requirements while improving system reliability throughout the equipment lifecycle.
Factory pre-engineered integration dramatically reduces on-site engineering and installation work, allowing hybrid energy systems to be deployed in days rather than months while minimizing project complexity and commissioning time.
Designed for demanding industrial environments, the system supports high-impact loads including construction equipment, pumps, compressors, engineering machinery, and EV charging infrastructure. Intelligent power control provides 100% three-phase load balancing and stable operation during short-duration overload conditions.
Built on a standardized containerized platform, HanCang supports evolving project requirements through flexible system integration, allowing renewable energy, backup generation, and connected loads to grow alongside your operation.
HanCang integrates solar generation, battery storage, utility power, diesel backup and EV charging within one coordinated system. Its energy management strategy prioritises solar power, stores surplus generation and operates the generator only when required, reducing grid dependence, fuel consumption and energy costs.
HanCang switches between grid-connected and off-grid operation in a typical 20 milliseconds. Support for 100% three-phase load imbalance and 200% short-term overload allows the system to handle sudden load changes and the start-up demands of industrial equipment while maintaining power for critical operations.
HanCang’s cloud-connected EMS provides real-time system monitoring, operating data, instant fault alerts and remote start/stop control. It coordinates battery status, solar generation, grid availability and generator operation automatically, allowing the complete energy system to run with less manual intervention.
HanCang arrives as a factory-integrated, pre-assembled containerised system that can provide power in as little as one week. Its mobile architecture supports relocation and redeployment, while reserved solar interfaces and modular expansion allow the system to evolve with changing project requirements.
Deploy containerised hybrid energy systems rapidly to restore power for emergency response, disaster relief, and temporary critical infrastructure.
Support reliable electricity for islands, remote facilities, military outposts, and locations beyond the reach of stable utility networks.
Deliver resilient off-grid energy for remote extraction sites, drilling operations, and mining facilities with demanding power requirements.
Provide dependable hybrid power for construction sites, roadworks, tunnels, and large infrastructure projects where grid access is limited or temporary.
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