RE Series intelligent string type ESS

The RE series string energy storage system adopts the cutting-edge technical solutions of new energy storage at present, adopts a modular design concept, and takes the intelligent string energy storage integrated cabinet as the core equipment. In the system architecture, the Pack batteries are connected in series to form battery clusters. Each battery cluster is connected to an energy storage converter (PCS) integrated in the energy storage integrated cabinet to convert direct current into alternating current. Meanwhile, the energy storage inverter can also be directly connected to the output busbar of the photovoltaic system for inverter. After multiple energy storage integrated cabinets are connected in parallel, they are combined through alternating current and then stepped up by a transformer to be connected to the power grid.
In terms of safety performance, the single-cluster breaking and multi-layer segmented protection mechanism, combined with battery management system (BMS) and energy management system (EMS) technologies, significantly reduces the risk of safety accidents, and the downtime due to faults is shortened by 76% compared to centralized systems. In addition, string energy storage systems support flexible expansion and power replenishment, and can be freely configured according to actual needs. They can play a significant role in various scenarios such as industrial and commercial energy storage, distributed energy systems, microgrids, and household energy storage. In industrial and commercial scenarios, arbitrage between peak and off-peak electricity prices can be achieved, reducing electricity costs.

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  • Product Details
  • technology parameters
  • System structure

The mian function Introduction

1.Flexible regulation and intelligent management

Its modular design enables users to flexibly configure capacity according to actual needs, and it can be adapted to projects ranging from kilowatt-level household energy storage to megawatt-level industrial and commercial energy storage. Each battery cluster is independently connected to the energy storage converter to achieve refined management, and the charging and discharging strategies can be adjusted in real time according to changes in light and load. In distributed energy systems, in the face of the intermittency of renewable energy generation, string energy storage systems can respond quickly, smooth power output, and ensure the stability of power supply.

2.High efficiency and energy saving

String energy storage systems enhance overall efficiency by reducing energy transmission losses. Its distributed architecture avoids the complex convergence links of traditional centralized systems, reduces parallel losses, and the independent cluster management mode ensures that the failure of some equipment does not affect the overall operation, further reducing operation and maintenance costs and energy consumption.

3.Safe and reliable performance

The system adopts a single-cluster breaking and multi-layer segmented protection mechanism. When an abnormality occurs in a certain battery cluster, the faulty unit can be quickly isolated to prevent the spread of risks. In conjunction with the Battery Management System (BMS) and energy management system (EMS), the battery status is monitored in real time, and potential risks are warned in advance. The downtime due to faults is compressed to 24% of that of centralized systems, significantly reducing the probability of safety accidents such as thermal runaway.

4.Power grid support capacity

During the peak and off-peak periods of the power grid, the peak shaving and valley filling can be achieved through the peak and off-peak electricity price strategy to relieve the pressure on the power grid. When there are fluctuations or faults in the power grid, it can quickly switch to the backup power mode to provide continuous power for critical loads, ensuring the safety of electricity usage for enterprise production and residents' lives. It plays a significant role in enhancing the stability and reliability of the power grid.

Product module

RE-PVSS-20-50K

RE-PVSS-30-62K

RE-PVSS-50-107K

Battery capacity

51.2kWH

61.44kWH

107kWH

Standard battery unit voltage

512V

614V

716V

Maximum DC charging voltage

576V

690V

806V

Battery configuration of pack

102.4V100Ah/

10.24kW

102.4V100Ah/

10.24kW

102.4V100Ah/

10.24kW

Battery pack Discharge rate

0.5C

0.5C

0.5C

Battery pack configuration of system

5PCS

6PCS

7PCS

Rated PCS Power

20kW

30kW

50kW

Rated PV power

26kW

39kW

65kW

AC access mode

3*L+N+PE

Inverter

Rated output voltage

3*230V+N

Rated output frequency

48~52HZ

(58~62HZ)

System efficiency

86~94%

Grid following

Rated output voltage

Follow the grid

Rated output frequency

Follow the grid

System efficiency

99%

Battery no load loss

1%

Power grid no load loss

0.5%

Cooling mode

Forced air cooling

Operating environment

Temperature: -10~40 Humidity: 20~95RH%

Maximum working altitude

2000m(> 2000m load reduction required)

Protection

Battery under (over) voltage protection/overload protection/over temperature protection/short circuit protection

Class of protection

IP54

Operation mode

On-grid/Off-grid

Picture

Product module

RE-JASS-100-215K

Maximum system configuration

Battery capacity

215kWH

2.5MW/5MWh

Standard battery unit voltage

512V

1331.2V

Maximum DC charging voltage

576V

1500V

Battery configuration of pack

102.4V100Ah/10.24kW

332V314Ah/1042kWh

Battery pack configuration of system

15PCS

48PCS

Battery pack Discharge rate

0.5C

0.5C

Rated PCS Power

100kW

5*500kW

Maximum photovoltaic access power

110kW

5*110kW

Rated PV input Voltage

620VDC

AC access mode

3*L+N+PE

Inverter

Rated output voltage

3*230V+N

Rated output frequency

48~52HZ

(58~62HZ)

System efficiency

86~94%

Grid following

Rated output voltage

Follow the grid

Rated output frequency

Follow the grid

System efficiency

99%

Battery no load loss

1%

Power grid no load loss

0.5%

Cooling mode

Forced air cooling

Operating environment

Temperature: -10~40 Humidity: 20~95RH%

Maximum working altitude

2000m(> 2000m load reduction required)

Protection

Battery under (over) voltage protection/overload protection/over temperature protection/short circuit protection

Class of protection

IP54

Operation mode

On-grid/Off-grid

Picture

 



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