The commercial and industrial (C&I) energy storage system is a professional electrical energy storage and intelligent energy management system developed for C&I power consumption scenarios such as industrial production enterprises, commercial complexes, industrial parks, supermarkets and data centers. It is mainly composed of core components including battery energy storage units, PCS (Power Conversion System), BMS (Battery Management System) and EMS (Energy Management System). Connecting the power grid with the power consumption side of C&I users, it realizes the storage, conversion, intelligent dispatching and optimal utilization of electrical energy. As an important part of the new power system, it can flexibly adjust the charging and discharging rhythm of electrical energy according to the power consumption demand of C&I users and the operation status of the power grid, and is a core solution for C&I users to optimize power consumption costs, ensure power supply safety and absorb new energy.
The commercial and industrial (C&I) energy storage system is a professional electrical energy storage and intelligent energy management system developed for C&I power consumption scenarios such as industrial production enterprises, commercial complexes, industrial parks, supermarkets and data centers. It is mainly composed of core components including battery energy storage units, PCS (Power Conversion System), BMS (Battery Management System) and EMS (Energy Management System). Connecting the power grid with the power consumption side of C&I users, it realizes the storage, conversion, intelligent dispatching and optimal utilization of electrical energy. As an important part of the new power system, it can flexibly adjust the charging and discharging rhythm of electrical energy according to the power consumption demand of C&I users and the operation status of the power grid, and is a core solution for C&I users to optimize power consumption costs, ensure power supply safety and absorb new energy.
|
Parameter |
Specification |
|
Rated Power / Rated Energy |
30KW/92KWh |
|
DC Voltage |
DC 672~876V |
|
Rated Power |
50Hz |
|
Rated AC Current |
45A |
|
Rated AC Voltage |
380V/1220V |
|
Output Harmonic |
≤3% |
|
Dimensions |
1300×900×2300mm |
|
Weight |
1.6T |
|
Place of Origin |
Anhui China |
|
Brand Name |
BOX-E |
· Compact Integrated Design, Space-saving Core components integrated in standard cabinet, optional floor/ wall-mounted installation, covers only 0.5-2 ㎡ per cabinet, suitable for narrow indoor/outdoor spaces.
· Flexible Small-capacity Configuration, Scalable Single cabinet capacity: 10kWh~200kWh, support parallel expansion for capacity upgrade, low initial investment, precise matching with small/medium power load demand.
· No Complex Construction, Ready for Use Pre-assembled and debugged in factory, only simple on-site fixing and wiring needed, installed and commissioned in 1-2 days, short project cycle.
· High Protection & Safety, Multi-environment Adaptation Multiple electrical protections, IP54+ protection grade, dust/ water/ corrosion resistance, suitable for indoor/outdoor conventional environments.
· Lightweight Intelligent O&M, Unattended Built-in mini EMS for automatic charging/discharging and remote monitoring, no complex vulnerable parts, extremely low daily operation and maintenance cost.
· Grid-connected/Off-grid Dual Mode, Emergency Power Supply Realize peak-valley arbitrage in grid-connected mode; switch to off-grid mode in milliseconds for emergency power, avoid business interruption loss.
· Standardized Cabinet, Convenient Logistics Standard industrial size, light weight for easy transportation, adaptable to global general logistics, lower transportation cost for overseas small orders.
· Industrial Production Enterprises (Steel/chemical/manufacturing plants): Achieve peak-valley arbitrage to cut electricity costs; act as backup power to ensure continuous production line operation during power outages and reduce capacity losses; adapt to off-peak power demand of high-energy-consuming enterprises and lower demand charges.
· Commercial Complexes (Shopping malls/hotels/office buildings): Discharge at peak hours to replace grid power and save electricity fees in high-price periods; provide emergency power for elevators, central air conditioners and cash register systems to avoid business interruption.
· Industrial Parks/Sci-tech Parks: Unified energy dispatching for multiple enterprises in the park to realize park-level peak-valley arbitrage and grid peak shaving; absorb distributed PV/wind power in the park to build zero-carbon parks, meeting the demand for green park construction overseas.
· New Energy Supporting Projects (PV/wind power stations, distributed new energy projects): Store new energy power generation to solve the intermittency and volatility of PV/wind power, improve new energy absorption rate and avoid curtailment; realize multiple values of "self-generation & self-use, surplus power storage, grid-connected peak shaving".
· Data Centers/Communication Base Stations: Provide millisecond-level uninterrupted power supply (UPS-level backup power) to ensure stable operation of servers and communication equipment, avoiding data loss/communication interruption; flatten power load and reduce grid expansion costs.
· Cold Chain Logistics/Warehousing Centers: Ensure continuous power supply for cold storage equipment to prevent deterioration of cold chain goods; optimize electricity costs in high-power-consuming cold chain scenarios via peak-valley charging and discharging.
· Remote Areas/Temporary Power Scenarios (Mining areas/overseas construction sites/island commercial complexes): Serve as the main power supply in off-grid mode or supplement grid power in grid-connected mode; form a microgrid with new energy to solve the problem of insufficient grid supporting in remote areas.
· Municipal Public Facilities (Large venues/transport hubs/hospitals): Provide emergency power during events/operation and flatten peak power load of venues and hubs; act as backup power for key hospital departments (operating rooms/ICUs) to improve public power supply reliability.
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