Integrated energy storage and boosting substation with inverter
(Energy Storage Compact Substation)
Product Introduction:
The integrated energy storage and boosting station with a converter is a highly integrated solution that integrates photovoltaic inverters, transformers, and switchgear into one. It has the characteristics of high efficiency, energy saving, safety and reliability, and easy installation. The product adopts a containerized design, which is convenient for transportation and significantly reduces on-site installation and debugging time. At the same time, it has excellent anti-corrosion, thermal insulation, and dustproof performance, and can adapt to various complex environments. Compared to traditional solutions, investment costs are reduced by 15% to 20%, operation and maintenance are simpler, and economic benefits are more significant.
Scope of application:
Integrated energy storage and boosting stations with inverters are widely used in new energy fields such as photovoltaic power generation, wind power generation, and energy storage power stations, especially suitable for centralized photovoltaic power stations and large-scale energy storage projects. Its high integration and excellent environmental adaptability make it perform excellently in complex environments such as industrial parks, remote mountainous areas, deserts, and coastal regions.
Product Description:
Product features:
Main parameters:
Rated power range: 500kW~6300kW
Low voltage side voltage: 0.27kV/0.4kV/0.69kV
High voltage side voltage: 10kV/35kV
Frequency: 50Hz/60Hz
Efficiency: Overall efficiency ≥ 98.5%
Execution standards:
GB/T 17467-2020 High/Low Voltage Prefabricated Substations
GB/T 6451-2020 Technical Parameters and Requirements for Oil immersed Power Transformers
GB/T 10228-2015 Technical Parameters and Requirements for Dry type Power Transformers
GB/T 1094.1-2013 Power Transformers Part 1: General Principles
GB 4208-2017 Degrees of Protection Provided by Enclosures (IP Code)
GB/T 19939-2005
GB/T 50063-2017 Technical Requirements for Grid Connection of Photovoltaic Systems
GB/T 4208-2017 Electrical Design Specification for Power Equipment
Note: The above Chinese national standards are higher than or equivalent to the corresponding IEC standards.
Technical advantages:
Integrating electromagnetic optimization design, parametric drawing, performance analysis and structural optimization, automatic drawing, and other functions of transformers to achieve resource sharing in transformer design, as well as searching, modifying, and version control of various data information.
The current field, temperature field, electric field, leakage magnetic field, wave process, and short-circuit force of transformers. The research and design of each series of products are carried out through simulation analysis of flow and temperature fields to determine the average temperature rise of the coil and the hot spot temperature seat, ensuring product performance.
By collecting key data such as temperature, current, voltage, vibration, and grid harmonics of transformers, online power quality analysis, fault alarms, and installation on mobile phones can be achieved.
Ordering Notice:
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