• Sistema de almacenamiento de energía en contenedor de 40 pies de 1 MW/2,15 MWh para integración solar + red y respaldo industrial Sunpal
  • ESS en contenedor de 2MWh Solución todo en uno refrigerada por líquido para aplicaciones comerciales y de servicios públicos Sunpal
  • Contenedor de baterías plug-and-play C&I Megawatt ESS (100-2150kWh) para la gestión de la carga de la demanda Sunpal
  • 1000kWh-2150kWh 40ft Container ESS LiFePO4 Battery System for C&I Peak Shaving & Renewable Integration Sunpal
  • Sistema de almacenamiento de energía en contenedor de 40 pies de 1 MW/2,15 MWh para integración solar + red y respaldo industrial Sunpal
  • ESS en contenedor de 2MWh Solución todo en uno refrigerada por líquido para aplicaciones comerciales y de servicios públicos Sunpal
  • Contenedor de baterías plug-and-play C&I Megawatt ESS (100-2150kWh) para la gestión de la carga de la demanda Sunpal
  • 1000kWh-2150kWh 40ft Container ESS LiFePO4 Battery System for C&I Peak Shaving & Renewable Integration Sunpal

1MW/2.15MWh ESS Contenedor de 40 pies para respaldo de energía C&I

    Contenedor de 40 pies con PCS de 1 MW y LFP de 2,15 MWh
    Baterías refrigeradas por aire con más de 8000 ciclos
    Admite energía fotovoltaica, diésel y de red
    PCS modular con sistema completo de protección contra incendios
    IP54 para exteriores con BMS y EMS avanzados
    Compatible con la programación de la red y la reducción de picos

Comparte:

Parámetros PCS

Rango de tensión FV315 - 550 V (tensión mínima de la batería: 50 V)
Corriente de entrada FV máx.10*160A
Cantidad MPPT1/5/10
Rango de tensión de la batería600~950V
Potencia de bus del lado de CC500 kW
Número de entradas del lado CC1

Parámetros de la batería

Capacidad nominal de la batería215 kWh*10
Tensión nominal de la batería832V
Rango de tensión de la batería672~864V
Serie de batería10P*20S*12S
Batería adaptableLFP
Capacidad de la célula280Ah

Parámetros generales

Grado de protecciónIP54
Temperatura ambiente-25°C a +60°C((Reducción por encima de 45°C)
Humedad relativa0 ~ 95% (sin condensación)
Sistema de extinción de incendiosPerfluorohexano/heptafluoropropano
sistema de extinción de incendios en tuberías
Método de refrigeración del compartimento de la bateríaAire acondicionado
Método de refrigeración del compartimento eléctricoRefrigeración por aire inteligente
Altitud3000m (> 2000m de reducción)
Interfaz de comunicaciónRS485 / CAN
Dimensiones (An*P*Al)12196*2438*2896mm (Contenedor);
800*800*2100mm(Combiner Converter)
Peso (aprox.)27.5t

Introducción

Q :

1. Para qué está diseñada esta ESS en contenedor de 1 MW?

A :


Our 1MW containerized Energy Storage System (ESS) is a turnkey solution engineered for commercial and industrial (C&I) clients seeking to optimize energy costs, enhance power reliability, and achieve sustainability targets. It is specifically designed to deliver a strong return on investment for a variety of demanding applications.

Key applications and their direct benefits include:

Peak Shaving for Cost Reduction: For businesses with high electricity consumption, our system intelligently stores low-cost off-peak energy and discharges it during peak hours. This directly cuts down on expensive demand charges, which can significantly reduce your monthly utility bills.

Critical Load Backup & Uninterruptible Power Supply (UPS): Power outages can halt production and lead to substantial financial losses. This 1MW ESS acts as a reliable backup power source, ensuring your critical operations—such as production lines, data centers, or cold storage—continue seamlessly during grid failures, safeguarding your revenue and assets.

Renewable Energy Integration & Self-Consumption: It perfectly complements on-site solar (PV) installations. By storing excess solar energy generated during the day, you can use clean energy at night or on cloudy days. This maximizes your self-consumption rate, reduces reliance on the grid, and accelerates the return on your renewable energy investment.

Grid Services & Revenue Generation: The system is equipped to participate in grid-support programs like demand response and frequency regulation. This allows you to sell stored energy and capacity back to the grid, creating a new, passive revenue stream for your business.

Microgrid & Off-Grid Support: It can serve as the core of a stable and independent microgrid, providing reliable power for remote industrial sites, mining operations, or large agricultural enterprises with unstable or non-existent grid access.

The all-in-one, containerized design integrates batteries, a Power Conversion System (PCS), and energy management system for rapid deployment and scalability. It is the ideal solution for any forward-thinking business looking to take control of its energy future.

Q :

2. ¿Cuáles son los principales componentes del sistema en su interior?

A :

El ESS en contenedor de 1 MW incluye baterías LFP, PCS modulares, ATS, inversores fotovoltaicos, HVAC, extinción de incendios y un sistema integrado de gestión de la energía.

Q :

3. To a Battery Energy Storage System container (BESS), how does it handle thermal and fire safety?

A :


Safety is the foundational principle of our BESS container design. We employ a multi-layered, defense-in-depth strategy that spans prevention, early detection, active suppression, and system containment to protect your assets, ensure personnel safety, and guarantee operational reliability. Our system is engineered in strict accordance with leading international standards, including NFPA 855 (Standard for the Installation of Stationary Energy Storage Systems) and UL 9540 (Standard for Energy Storage Systems and Equipment).

Here is how our comprehensive safety system works:

1.0: Prevention: Proactive Thermal Management

The first line of defense is preventing thermal runaway before it starts.

1.01: Precision Climate Control: The container is equipped with an industrial-grade HVAC (Heating, Ventilation, and Air Conditioning) system. This system maintains a stable internal temperature and humidity, ensuring the LiFePO4 batteries operate within their optimal, safe temperature range, which maximizes both safety and battery lifespan.

1.02: Advanced Battery Management System (BMS): At the core of our system is a sophisticated BMS that continuously monitors the voltage, current, and temperature of every single battery cell. It performs real-time balancing to prevent overcharging or over-discharging and will automatically isolate any anomaly long before it can escalate into a safety risk.

2.0: Early Detection: 24/7 Intelligent Monitoring

Should an issue arise, our system is designed to detect it at the earliest possible stage.

2.01: Multi-Sensor Array: We integrate a suite of high-sensitivity detectors, including smoke detectors, thermal sensors, and off-gas sensors that can detect the specific flammable gases released during the initial phase of a battery cell failure.

2.02: Early Warning Alarms: Upon detection of any irregularity, the system immediately triggers audible and visual alarms on-site and sends instant notifications to your remote monitoring platform. This allows for rapid intervention, often resolving the issue before suppression is even needed.

3.0: Suppression: Rapid & Effective Fire Suppression

In the unlikely event of a fire, a robust, automated suppression system is activated.

Gas-Based Suppression System: The container is protected by a clean agent fire suppression system, utilizing agents like Perfluorohexane or Heptafluoropropane. These gases are highly effective at extinguishing lithium-ion battery fires by rapidly cooling and interrupting the chemical reaction, without causing damage to the electronic equipment. The system automatically floods the protected space within seconds of confirmed detection.

4.0: Containment: Structural Integrity

Robust IP54 Enclosure: The container itself is built to an IP54 rating, providing a durable, fire-resistant enclosure that helps to contain any incident and prevent it from spreading externally.

By integrating these four critical layers of safety, we provide a BESS solution that not only delivers exceptional performance and financial returns but also offers the peace of mind that comes from knowing your investment is protected by state-of-the-art safety technology.

Q :

4. Admite la ESS de contenedor de 1 MW tanto el funcionamiento en red como aislado de la red?

A :

Sí, el ESS de contenedor de 1MW cuenta con conmutación de transferencia automática entre los modos de red y diésel, además de prioridad fotovoltaica y control antirretorno.

Q :

5. ¿Cuáles son las principales especificaciones eléctricas de una ESS en contenedor de 1 MW?

A :

Potencia nominal de CA de 1 MW, tensión de batería de 832 V, intervalo de 672-864 V, <3% THDi, and 98% max system efficiency.

Q :

6.How is the BESS container’s system monitored and controlled?

A :


Our BESS container is managed by a sophisticated, centralized Energy Management System (EMS), which acts as the intelligent core of the entire solution. The EMS provides comprehensive visibility and granular control, empowering you to maximize your return on investment through data-driven decisions.

You can access the system through two convenient interfaces:

On-site Control: A local Human-Machine Interface (HMI) with an intuitive LCD touchscreen is located directly on the container for on-site commissioning, diagnostics, and manual operation by technicians.

Secure Remote Access: A powerful, web-based portal allows your team to monitor, control, and analyze the BESS performance from any PC or mobile device, anywhere in the world, 24/7.

Key monitoring and control capabilities include:

Real-Time Performance Dashboard: Gain complete transparency with live data visualization of critical parameters, including battery State of Charge (SoC), State of Health (SoH), power flow, grid status, and thermal conditions within the container.

1.0: Intelligent Strategy Automation: The EMS is more than just a monitoring tool; it’s a control center. You can easily configure and automate advanced operational strategies, such as:

1.01: Peak Shaving: Set thresholds to automatically discharge the battery during peak demand hours, minimizing costly demand charges.

1.02: Time-of-Use Arbitrage: Program the system to charge during off-peak hours when electricity is cheap and discharge when it’s expensive.

1.03: Renewable Energy Optimization: Maximize the self-consumption of your on-site solar generation.

Automated Alarms & Reporting: Customize alerts for any system deviation, which can be sent via email or SMS to your operations team. The EMS also generates detailed historical performance reports, providing clear insights into energy savings, system uptime, and overall financial benefits.

Flexible System Integration: With built-in support for standard industrial communication protocols like Ethernet, RS485, and CAN, our EMS can seamlessly integrate with your existing facility management systems, SCADA platforms, or third-party energy trading platforms.

Q :

What are the battery type and lifespan of this system?

A :


This system is built with premium-grade Lithium Iron Phosphate (LiFePO4) batteries, a chemistry deliberately chosen for its superior performance in demanding commercial and industrial applications where safety, reliability, and long-term value are paramount.

Why LiFePO4?

Unmatched Safety Profile:LiFePO4 is the safest and most thermally stable lithium-ion chemistry available. Its robust structure makes it highly resistant to thermal runaway, significantly reducing the risk of fire—a critical consideration for on-site C&I installations.

Superior Longevity & Durability:Unlike other chemistries, LiFePO4 batteries are not reliant on cobalt, which enhances their chemical stability and leads to a much longer operational life.

System Lifespan & Performance:

Our BESS is engineered for a long and productive service life, providing a secure return on your investment.

Design Life: The system has a design life of over 15 years.

Cycle Life: It is rated for more than 8,000 charge-discharge cycles under standard operating conditions (typically 80% Depth of Discharge, 0.5C charge/discharge rate). This high cycle count ensures sustained performance for daily peak shaving, energy arbitrage, or renewable integration applications, directly contributing to a lower Levelized Cost of Storage (LCOS).

1.0: Advanced Battery Protection:

To ensure this longevity and protect your investment, the entire battery system is managed by a sophisticated three-level Battery Management System (BMS):

1.01: Cell-Level Monitoring (Slave BMS): Each individual battery cell’s voltage and temperature are constantly monitored and balanced.

1.02: Module-Level Management (Master BMS): This level aggregates data from cell clusters, managing the overall health and performance of each battery module.

1.03: System-Level Control (Central BMS): The top-level controller oversees the entire battery bank, coordinating with the thermal management system and PCS to ensure optimal system performance and providing comprehensive protection against over-voltage, under-voltage, over-current, and extreme temperatures.

This multi-layered BMS architecture guarantees not only the safety and reliability of the BESS but also actively works to maximize the operational lifespan of the batteries.

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