Highjoule New Zealand Containerized Energy Storage System Case
Project Purpose Due to New Zealand's unique geographical environment and emphasis on renewable energy, it has become an important target market for containerized energy storage systems.
Basic parameters 50KW-300KWh;50KW-600KWh;50KW-700KWh
Project Overview The case includes three container energy storage systems with different configurations: 10-ft 50KW-300KWh, 20-ft 50KW-600KWh/50KW-700KWh.
Project Location South Pacific New Zealand
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Project Overview:
This project, implemented by Highjoule in New Zealand , aims to provide a comprehensive, integrated energy storage and power solution for local customers. The system includes three containerized energy storage systems in different configurations: a 10-foot 50kW-300kWWh system, a 20-foot 50kW-600kWWh system, and a 20-foot 50kW-700kWWh system. Each system can be flexibly integrated into the customer’s existing energy management system (EMS), enabling unified energy dispatch and remote operations and maintenance.
Project Background and Application Scenarios:
The energy storage system in this project has a wide range of applications, covering multiple industries and scenarios:
- Emergency Response: For example, post-disaster reconstruction and backup power during sudden grid failures.
- Temporary Power Needs: Suitable for various outdoor activities (such as music festivals and camping) and construction sites.
- Energy Support: Particularly suitable for power support in remote areas, such as oil and gas production areas and mining operations.
- Flexible Deployment and Mobile Rental: Meet the needs of rapid mobility and deployment.
Customers can monitor the operating status of each energy storage unit in real time through a unified EMS platform, ensuring efficient system operation.
System Configuration and Main Equipment:
The project utilizes 10-foot and 20-foot container structures for easy transportation and rapid on-site deployment.
- Container Size: Standard 10-foot and 20-foot containers facilitate transportation and on-site deployment.
- Battery Capacity: Three configurations are available, including 50kW-300kWWh, 50kW-600kWWh, and 50kW-700kWWh, to flexibly meet varying load requirements.
- High-Performance Battery: Equipped with high-energy-density lithium iron phosphate cells, it provides stable and long-life battery performance and features a temperature control system and multiple electrical protection measures.
- Environmental Adaptability: The system boasts an IP65 rating, effectively resisting dust and water, and is resistant to various harsh climates. Its corrosion resistance is rated C4, ensuring efficient operation even under extreme conditions.
- All system modules integrate with the customer’s existing EMS platform and support communication protocols such as Modbus, CAN, and RS485 for seamless integration.

Project Advantages:
- Wide Range of Applications: This highly flexible containerized energy storage system can be widely used in a variety of fields, including post-disaster emergency response, temporary power needs, and energy support.
- Fast Installation and Deployment: The system utilizes standardized interfaces and a pre-commissioned design, significantly shortening the installation cycle. Typically, the time from equipment arrival to commissioning takes only a few hours, reducing on-site construction complexity.
- Harsh Environment Resistance: The system is designed with an IP65 protection rating and C4 corrosion protection, ensuring normal operation in extreme environments such as tropical, humid, and cold.
- Customization and Fast Delivery: The project has a delivery period of 40 days. Customers can customize the system configuration based on their specific needs to meet the power grid and power requirements of different regions.
- Safety and Durability: The system is equipped with multiple safety protection mechanisms, including overvoltage, overcurrent, and overtemperature protection, ensuring safety and reliability. The battery cells use long-cycle-life lithium iron phosphate batteries, combined with an intelligent BMS system, effectively extending the service life of the equipment.
Summary:
Highjoule’s containerized energy storage system project for the New Zealand market not only meets the needs of various application scenarios, but also offers rapid delivery, customized configuration, and excellent environmental adaptability. Leveraging its advanced technology and efficient system integration, the project will significantly improve energy management efficiency for local customers and promote sustainable development in the energy sector.