Overview
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Plug into Innovation with HIS-Energy Battery Management System
Simplifying HISbatt Technology: Superior Performance and Safety in Battery Storage System
The performance, lifespan, and safety of an energy storage system are fundamentally influenced by the distinct properties of its components and the integration of robust software. For this reason, we exclusively utilize components of the highest quality, such as the LFP high-performance cells from CATL, and incorporate advanced liquid cooling battery module technology. All components are seamlessly integrated with a state-of-the-art, multi-level battery management system (BMS) outfitted with hundreds of sensors. This exceptional fusion of premium components and comprehensive safety systems ensures that our products not only achieve high efficiency but also exhibit superior durability.
Consider the assembly of our HISbatt battery storage systems as akin to executing a complex blueprint. The construction is divided into four essential components:
- The tangible components that constitute the battery's core structure. (Cells, Modules)
- The power conversion system, notably the inverter, which facilitates the physical linkage of the battery to the loads or source.
- The Battery Management System (BMS), a sophisticated control mechanism that ensures the battery operates at optimal efficiency.
- The Energy Management System (EMS), the central intelligence of the energy storage system, enabling the execution of various applications such as enhancing solar self-consumption, managing EV charging stations, and peak shaving, among others.
How Premium LFP Battery Cells Boast Safety and Performance?
We exclusively utilize the industry’s pinnacle of safety and efficiency, the UL9540A-certified LFP cells from CATL. These cells are unparalleled in their performance, boasting exceptional calendars and cyclic lifespans that set them apart in the energy storage sector. Their impeccable record, highlighted by multi GWh of in-field experience without a single accident, cements their prestigious status among energy storage solutions.
The high energy and power density of these cells not only make them versatile for a wide range of applications but also underscore their reliability and superior performance.
LFP vs. NMC: The Sustainable & Safer Choice
Compared to NMC technology, LFP cells offer a greener, more sustainable, and significantly safer lithium iron phosphate battery technology. Their environmentally friendly nature, combined with their durability and safety, ensures that customers are investing in a technology that is both long-lasting and inharmony with the planet
Liquid Cooled Robust Battery Modules & BatteryPacks
The battery pack is made up of 4 battery modules, each consisting of 13 high-quality LFP 280Ah CATL cells arranged in series, accompanied by two touch-proof high-voltage plug-in contacts. It is encased in an explosion-proof, IP67-certified metal housing featuring integrated closed-circuit liquid cooling paths, safeguarding the battery modules against all mechanical and environmental threats.
In the event of a fire, the battery pack can withstand temperatures up to 550°C and is additionally equipped with a pressure release valve for ultimate safety.
Battery Management Unit(BMU)
The BMU (Battery Management Unit) serves as the integral protection system for the battery at both cell and module levels, and is a crucial component of the Battery Management System (BMS). It is equipped with DC fuses and contactors to ensure safety, providing the DC connections necessary for the battery inverter. BMU is outfitted with sensors for voltage, current, isolation, and environmental conditions, acting as the primary line of defence for the batteries in case of external interference
Versatile Battery Cabinets for All Environments
Our outdoor battery cabinets, boasting IP55 and UN3840 certifications, stand as a testament to unmatched quality and unparalleled safety. Designed for convenience, they allow for transportation with battery modules pre-installed and offer compatibility with both forklifts and cranes for effortless handling.
HISbatt cabinets are equipped with an advanced closed-loop, liquid-cooled thermal management system, ensuring optimal efficiency and extending the lifespan of the batteries, similar to those used in electric cars.
Equipped with environmental sensors, pressure relief valves, and an active fire safety system, they embody our unwavering commitment to safety, guaranteeing peace of mind in any setting.”
Integrated Efficient Inverter
Our meticulous selection and seamless integration of efficient and robust inverters enhance the versatility of our HISbatt battery solutions. For On-Grid applications, we utilize SiC-based, highly efficient bi-directional inverters from KACO (A Siemens Company), which boasts numerous European grid certifications. Their outdoor-friendly and straightforward installation designs align with our HISbatt All-in-One solutions’ plug-and-play approach.
Battery Management System
A Battery Management System (BMS) is a sophisticated technology that governs and monitors the charging and discharging of rechargeable batteries. It ensures optimal performance, longevity, and safety by regulating the battery’s environment through precise voltage, current, and temperature management. In today’s increasingly electrified world, BMS is crucial for the efficient operation of energy storage systems and plays a vital role in promoting sustainability and energy independence.
How HISbatt Ensures Safety at Multi Level with
Robust Battery Management System?
1st Level
Safety
Cell Level Monitoring: Our battery system uses top-tier 280Ah Lithium Iron Phosphate (LFP) cells with the highest fire safety certification. Each cell is monitored for current, voltage, and temperature every second by a Cell Counting System (CCS). Module BMS (M-BMS) receives this data and can halt operations if any parameters exceed safety limits.
2nd Level
Safety
Cluster Management: Module BMS (M-BMS) communicates with Cluster BMS (C-BMS), which oversees current, voltage, and insulation at the cluster level. It incorporates data from environmental sensors, including CO and H2sensors, and can cut off power to prevent overloading and ensure high efficiency and minimal degradation.
3rd Level
Safety
Stack Management: Stack Management BMS (A-BMS) receives comprehensive data from both M-BMS and C-BMS and has a High Voltage Module (HVM) to monitor DC connection safety. It can directly control battery operations and communicate with the Energy Management System (EMS) to engage safety devices or alert authorities if needed.
4th Level
Safety
Active Fire Protection: The entire battery system is designed to contain thermal runaways and complies with IEC 62619 standards. Our fire protection meets EN 54 standards, featuring an NFPA-2001-approved aerosol-based extinguishing agent from Stat-X for targeted fire suppression without power supply requirements, hence ensuring a maintenance-free, independent solution.
HIS-Energy Management System
All energy flows can be diligently recorded, controlled, and monitored with our Artificial Intelligence-equipped, smart HIS energy management system. Our EMS comprises of HIS-Energy Controller and the my HIS-Flow portal, offering a multitude of individual setting options. This allows for the seamless integration of a wide range of applications to perfectly tailor the system to any requirement.
Within the my HIS-Flow portal, you can integrate various applications such as PV self-consumption, peak shaving, and more, ensuring optimal coordination between energy generation and consumption through an integrated approach. The EMS boasts valuable additional functions, including minute-by-minute data evaluation for enhanced transparency and multi-use functionalities that combine multiple applications. This is further augmented by AI-based, predictive optimization for accelerated ROI.
HIS-EMS is versatile and, when combined with HISbatt solutions, can accommodate both current and future expansions in energy storage and renewable power plants. HIS-EMS significantly simplifies your energy management. It orchestrates the components of your energy system according to your specific requirements and desires, measuring, controlling, and optimizing with the assistance of artificial intelligence.
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