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30KW/100KWH Bess Battery Energy Storage System

Bess Battery Energy Storage System is a crucial component in modern energy infrastructure, playing a pivotal role in balancing the supply and demand of electricity. It serves as a reservoir for excess energy generated during periods of low demand or high renewable energy production, which can then be released when demand is high or renewable generation is low. Energy storage systems contribute to grid stability, enhance the reliability of power supply, and support the integration of renewable energy sources.
  • CYESS30KW100KWH

  • CYTECH

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Product Description

Bess Battery Energy Storage System Design Video




Bess Battery Energy Storage System Introduction


Bess Battery Energy Storage System or commercial and industrial energy storage system is a system that can store electric energy and supply power, with smooth transition, peak shaving and valley filling, frequency and voltage regulation and other functions. It can smooth the output of solar and wind power generation, and reduce the impact of its randomness, gap and fluctuation on the power grid and users; Charging in the valley price period and discharging in the peak price period can reduce the user's electricity expense; In case of power failure in the large power grid, it can operate independently to ensure uninterrupted power supply to users.



Bess Battery Energy Storage System Feature


◆ Support photovoltaic access;

◆ Multiple communication methods, supporting remote upgrades;

◆ Ultra high energy density, small size, easy installation and transportation;

◆ Modular design, flexible expansion, convenient transportation and maintenance;

◆ Supports 100% unbalanced load and 110% long-term overload;

◆ Adjustable output power, adjustable charging and discharging power, strong adaptability to the power grid.



BESS Battery Energy Storage System Parameter


Lithium battery parameter

Battery capacity

100KWH

Battery cell type

LPF(LeFePO4)

Single battery capacity

14.336KWH

Battery quantity

7

Rated voltage

358.4V

Max charger and discharger current

140A

PV input parameter

Max input power

45KW

Max input voltage

1000V

MPPT voltage ranger

200 ⁓850V

Starting voltage

200V

Rated voltage

620V

Max input current of each MPPT

30A

Maximum short-circuit current of each MPPT

38A

MPPT quantity

3

PV panel quantity of Each MPPT

2/2/2

On Grid output parameter

Rated output power

30KW

Max output power

33KW

Rated output voltage

400/380V

Rated output Frequency

50HZ

Max grid connected output current

50A

Max input current

50A

Power factor

0.8

Off grid output parameters

Off grid rated power

30KVA

Off grid output power

33KVA

Max output current

45.5A

Rated output voltage

400/380V

Rated output frequency

50HZ



Energy Storage System Cabinet Drawing


30KW100KWH energy storage system cabinet



System Components of Battery Energy Storage System


Energy storage system



Application

Applications of Energy Storage System


Renewable Energy Integration and Grid Stabilization

The commercial battery storage system, including the state‐of‐the‐art bess battery energy storage system and lithium battery storage cabinet, plays a pivotal role in attenuating the transient fluctuations associated with photovoltaic and wind power generation. This commercial energy storage system provides rapid response capabilities that effectively buffer the grid from sudden output variations, thereby optimizing resource utilization and mitigating wind curtailment. Its deployment ensures a more robust and resilient grid infrastructure.


Advanced Load Management and Frequency Regulation

Utilizing a sophisticated commercial energy storage system facilitates precise peak shaving, valley filling, and dynamic load smoothing. This system delivers swift frequency regulation, which is critical for maintaining grid operational stability and reliability. In microgrid configurations, the commercial battery storage system is indispensable for preserving the dynamic equilibrium and ensuring voltage stability for essential loads, thereby enhancing overall system resilience.


Economic Optimization through Load Shifting and Backup Power

By leveraging off-peak electricity consumption, the commercial energy storage system enables significant operational cost reductions. It capitalizes on the temporal price differentials between peak and off-peak periods, optimizing energy procurement strategies. Additionally, its role as a backup power source alleviates peak load stress, contributing to both economic efficiency and enhanced grid reliability.


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