Battery Management System (BMS)
Battery Management System (BMS)
Next-Generation Energy Management Solutions
At Oklidis, we’re proud to introduce our advanced Battery Management System (BMS), designed to optimize the performance, safety, and lifespan of batteries in electric vehicles and aerospace applications. Our BMS technology combines cutting-edge innovation and practical engineering, ensuring your battery systems operate at peak efficiency.
Key Features of Oklidis BMS
Energy Efficiency
Maximizes the usable capacity of your battery while minimizing energy waste, leading to enhanced system performance.
Advanced Cell Balancing
Includes both active and passive balancing methods to ensure consistent performance across all battery cells.
Thermal Management
Intelligent temperature control algorithms prevent overheating and extend battery life.
Scalability
Adaptable architecture suitable for a variety of applications, from electric vehicles to aerospace systems.
Safety Protocols
Built to the latest automotive standards, ensuring reliability even in extreme conditions.
Hardware Integration and Flexibility
Our BMS software is designed to be hardware-agnostic, offering seamless integration with a wide range of BMS hardware platforms. Whether you’re working with existing systems or developing custom hardware, Oklidis BMS can be easily adapted to meet your specific needs, ensuring a smooth and efficient deployment.
MATLAB-Compatible Libraries for NXP & Texas Instruments Components
To streamline development and integration, Oklidis offers basic software libraries compatible with MATLAB, specifically designed to work with NXP and Texas Instruments BMS components. These libraries provide engineers with an easy-to-use foundation for developing, simulating, and optimizing BMS algorithms on trusted hardware platforms, accelerating the development process and ensuring smooth implementation.
Application Software Library for Model-Based Design in Simulink
Oklidis provides a comprehensive application software library for Model-Based Design (MBD) in Simulink, designed to simplify BMS development and enhance system validation. This library includes:
Ready-to-use blocks for different balancing methodologies
Engineers can quickly implement and test both active and passive balancing strategies.
Data-driven modeling
Supports accurate system modeling based on real-world data, ensuring high fidelity in simulations and performance analysis.
Variety of battery models
Our library includes a broad selection of battery modeling and simulation tools, allowing users to simulate different battery chemistries, thermal behaviors, and charge/discharge dynamics. These models help in accurately predicting the performance of batteries under various operational conditions and integrate seamlessly into the overall BMS architecture.
Integration and Optimization Service for Battery Pack Producers
Oklidis offers an end-to-end integration and optimization service for battery pack producers who wish to incorporate our BMS technology into their systems. Our team provides seamless integration support to ensure that your battery packs work optimally with Oklidis BMS, regardless of your pack’s design or size.
Custom BMS Configuration
We work closely with battery pack producers to customize the BMS settings and functionalities to match the specific requirements of the pack.
Performance Optimization
By analyzing the unique characteristics of your battery packs, we optimize the BMS for maximum efficiency and longevity.
Flexibility for Multiple Pack Types
Whether you are working with lithium-ion, solid-state, or other types of battery packs, Oklidis BMS can be tailored to your specific needs.
Support and Training
Our engineering team provides hands-on support during integration, along with training sessions to ensure your team is fully equipped to manage and maintain the system.
Compliant with Automotive Standards & AUTOSAR
Oklidis BMS is developed in compliance with AUTOSAR (Automotive Open System Architecture) standards, ensuring modularity, scalability, and compatibility with industry-leading automotive systems. Furthermore, our BMS adheres to ISO 26262 functional safety standards, ensuring that it meets the stringent requirements necessary for safety-critical applications in automotive environments.
HIL Test Setup for Battery Models and BMS Software
At Oklidis, we provide a state-of-the-art Hardware-in-the-Loop (HIL) test setup specifically designed to optimize the performance of both battery models and BMS software. This powerful testing environment allows for real-time simulation and validation of BMS solutions, ensuring that they operate efficiently and reliably under real-world conditions.
- Real-Time Performance Testing: Our HIL test setup simulates the behavior of batteries and BMS systems in real time, replicating actual operational conditions to identify performance bottlenecks and optimize system performance.
- Seamless Integration with Battery Models: The HIL setup is fully integrated with our battery models and BMS software, allowing for detailed testing of balancing strategies, thermal management, and system safety.
- Optimization for Automotive and Aerospace: Whether you’re developing BMS for electric vehicles or aerospace applications, our HIL testing process ensures that your systems meet the highest standards of reliability, efficiency, and safety.
By using the Oklidis HIL setup, battery pack producers and system integrators can optimize their solutions, reduce development time, and ensure superior system performance before deployment.
Our customer-centric approach
We work closely with our clients to understand their unique needs and customize our services accordingly, ensuring that each project’s goals are met.
Throughout the development process, we maintain open lines of communication with our clients, providing regular updates and insights into project progress.
Real-World Applications
Oklidis BMS has been successfully deployed in both automotive and aerospace projects, delivering top-tier performance and reliability. Our BMS is the trusted choice for companies seeking adaptable, high-performance energy management systems.