Selection: 1.93 MWh Battery Capacity
Rationale: The chosen battery capacity of 1.93 MWh is based on the logistics park s average daily power consumption and emergency backup requirements. This capacity is sufficient to cover the park’s energy needs during non-peak hours and provides continuous power for several hours to half a day during an outage, ensuring that critical operations remain uninterrupted.
Benefits: This configuration supports uninterrupted power supply during emergencies and off-peak hours, enhancing operational resilience.
Advantage: The 1.93 MWh capacity ensures that the logistics park can maintain critical operations without relying solely on the traditional grid, thus enhancing energy security and reliability.
Selection: 1 MW PCS Power Configuration
Rationale: The PCS (bidirectional converter) is configured with a 1 MW integrated cabinet, designed to enable seamless grid and off-grid switching. It receives dispatch commands from the Energy Management System (EMS) and provides fast response capabilities for charging and discharging in self-consumption mode, island protection, and high low voltage ride-through capabilities.
Benefits: The 1 MW PCS ensures rapid and efficient power conversion, enhancing energy management flexibility and operational stability.
Advantage: This configuration allows the logistics park to efficiently manage energy use between grid and self-generation, ensuring a stable and reliable power supply under various conditions.
Selection: 500 kW Solar Inverter Configuration
Rationale: The maximum configuration of a 500 kW solar inverter, using an AC-coupling solution, is based on the area s sunlight intensity and the available rooftop area of the logistics park. With an expected 5 hours of sunlight per day and an 80% solar efficiency rate, the system can generate approximately 2 MWh daily. This setup effectively harnesses solar energy, reducing reliance on the grid and charging batteries during the day for nighttime use.
Benefits: The 500 kW solar power capacity maximizes the use of renewable resources, significantly decreasing grid dependency and operational costs.
Advantage: This configuration ensures efficient solar energy utilization, optimizing the logistics park s energy independence and sustainability.
Battery Storage System | |||||||
Cell Type | System Battery Configuration | Rated Battery Capacity(kWh) | Battery Voltage Range(V) | BMS Communication Interface | BMS Communication Protocol | ||
3.2V/314Ah |
240S1P*8 | 241.2*8 | 600~876 | RS485,Ethernet | Modbus TCP | ||
AC Output | |||||||
Rated Power(MWh) | Current Distortion Rate | DC Component | Grid Voltage(V) | Power Factor | Power factor Adjustable Range | Rated Frid Frequency(Hz) | Grid Frequency Range(Hz) |
1 | < 3 % (at rated power) | < 0.5 % (at rated power) | 400 | > 0.99 (at rated power) | 1 (overrun) to 1 (lag) | 60 | 55~65 |
MPPT | |||||||
Rated Power(kW) | Full load MPPT range(V) | Operating Voltage Range(V) | Starting Voltage(V) | Rated Input Voltage(V) | Max. short-circuit Current of Single MPPT(A) | Output Voltage Range(V) | Power Factor |
100*5 units | 180~1000 | 200~1000 | 200 | 600 | 52.2 | 400 | 0.8 ahead ~ 0.8 lagging |
The advanced Battery Management System (BMS) monitors voltage, current, and temperature to ensure optimal performance and longevity. Predictive algorithms provide early warnings of battery aging for proactive maintenance.
A high-efficiency cooling system with optimized airflow maintains safe battery temperatures in extreme heat, while smoke detectors and heptafluoropropane fire suppression ensure comprehensive safety.
The system enables seamless integration with photovoltaic panels and diesel generators, supporting versatile energy switching for enhanced stability and reliability in power supply.
The combination of photovoltaic and energy storage reduces operational costs and carbon footprint, aligning with green energy trends.
The 1MW PCS, photovoltaic inverter, and STS module provide versatile functions such as charging, discharging, and grid interaction. This setup mitigates the impact of diesel generator integration and improves power quality, ensuring high system reliability and rapid emergency response.
The 500kW photovoltaic system paired with 1.9MWh storage is designed based on the store s actual energy needs and local sunlight conditions, avoiding unnecessary costs from overconfiguration.