11.05.2026 aktualisiert


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IoT & Embedded Systems Engineer | Power Systems · E-Mobility · Clean Energy
Köln, Deutschland
Weltweit
Engineering Diploma in Embedded Systems, Automation, and Industrial Computer ScienceÜber mich
Embedded Systems & IoT Engineer, specializing in edge energy management, IIoT, and clean-tech systems. Experienced in CEMS, OpenEMS, LoRaWAN, embedded Linux, hydrogen hybrid systems, and EV charging infrastructure. Currently building smart energy solutions at Apollo Green Solutions, Germany.
Skills
IoTC (Programmiersprache)Java3D PrintingLTE (Telekommunikation)Systems EngineeringArduinoEditingAutomotive ElectronicsC++SolidWorks (CAD)LinuxElektrischer SystementwurfElectro Mechanical SystemEmbedded C++
IoT & Embedded Systems Development
Expertise in designing and developing embedded systems using platforms such as Arduino, Raspberry Pi, STM32, ESP32, UniPi, FPGA, and CompactRIO. Development of edge commercial energy management systems with OpenEMS on Linux-based controllers, including Docker, OTA, SSH, and custom device integration.
Programming & Software Engineering
Proficiency in multiple programming languages, including Python, C, C++, MATLAB, Ladder, and Java. Development of Python/Java applications for MQTT, Modbus TCP polling, local buffering, and watchdog reconnection.
Model-Based Design & Simulation
Strong background in model-based design using MATLAB, Simulink, and Simscape for modeling and simulating complex systems such as PEM fuel cell-battery hybrid systems. Experience with EMS control strategies, including PID, fuzzy logic, moving average, and hysteresis, as well as MIL, SIL, PIL, and HIL validation using OPAL-RT.
Communication Protocols
Hands-on experience with a wide range of communication protocols, including LoRaWAN, Modbus, ASCII, UART, I2C, SPI, TCP/IP, CAN, and MQTT, applied in industrial and embedded system contexts.
PCB & CAD Design
Design of PCBAs and protective enclosures using SolidWorks, KiCAD, and Saturn PCB Toolkit. Designed prototypes for AC EV supply equipment ranging from domestic to public power outputs.
E-Mobility & Renewable Energy Systems
Co-founded a startup developing AC EV charging solutions for the EMEA market. Experience with PVSyst, HOMER ENERGY, and renewable energy system design and simulation.
Systems & Development Tools
Practical experience with Linux, Docker, OpenEMS, TTN, LabVIEW, Vivado, Xilinx, Petalinux, SAP ERP, and LaTeX for system development, deployment, and documentation.
PLC & Industrial Automation
Integration and maintenance of Siemens S7-1200 PLC-based control systems. Programming in Ladder language and working with industrial automation platforms in research and production environments.
Sprachen
DeutschGrundkenntnisseEnglischverhandlungssicherFranzösischverhandlungssicher
Projekthistorie
Building edge Commercial Energy Management Systems monitoring and control of power assets (PV, batteries, smart meters) using OpenEMS on Linux-based controllers with Docker, OTA, SSH, and custom device integration. Building Python/Java applications for MQTT, Modbus TCP polling, local buffering, and watchdog reconnection. Retrofitting legacy meters with LoRaWAN connectivity. Supervising interns and representing solutions at trade fairs like Embedded World, SHK+E, and E-World in 2026.
Characterized, modeled, and simulated PEM fuel cells-battery hybrid systems in MATLAB/Simulink and Simscape, comparing PID, Fuzzy Logic, Moving Average, and hysteresis EMS control strategies for stationary applications. Performed Model, Software, Processor, and Hardware-in-the-Loop (MIL, SIL, PIL, HIL) validation using OPAL-RT and Arduino UNO R4 WiFi. Maintained an 8 kW aeronautical hybrid hydrogen test bench and integrated Siemens S7-1200 PLC-based control.
Co-founded a startup developing AC EV charging solutions for the EMEA market, led a multidisciplinary team of 15 to accomplish over 10 projects, and secured 5 strategic partnerships. Designed PCBA and protective enclosures for 4 AC EV supply equipment prototypes, ranging from domestic (3.4-7.4 kW) to public (11-22 kW) power outputs. Supervised software, firmware, and hardware development, including BOM lists, simulations, and assemblies.