M.Sc. Michael Peter Siemon
Research Assistant
Department: PAES | Department of Process Automation and Embedded Systems
Team: Chair of Process Informatics | Prof. Dr.-Ing. Andreas Pretschner
Telephone +49 (0)341 3076 1245
Send an email | michael(dot)siemon(at)htwk-leipzig.de
HTWK Leipzig | Faculty of Engineering
Wiener-Bau | Room WI214
Wächterstraße 13, 04107 Leipzig
SDC-VAS
Service-Oriented Device Connectivity – Distributed Alarm System
Development of concepts and methods for sensor integration and data fusion: As part of this research project, the aim is to develop an intelligent system that enables automatic, personalised and prioritised alarm processing in intensive care units and intermediate care units. The aim is to significantly reduce the current, uncontrolled flood of alarms faced by nursing staff and patients. Alarms – triggered by individual medical devices – will no longer sound at the device itself and thus at the patient’s bedside, as has been the case to date. A centralised system (SDCDAS) for intelligent, distributed alerting will handle alerts from devices from any manufacturer and transmit them to locations away from the patient’s bed.
Funding: BMWi (Grant No.: KK5059403)
Project duration: 08/2021 – 07/2024
Project partners: University of Leipzig
VITALS
The aim of the project is to develop a mobile EITEKG combination system, the non-invasive monitoring of respiratory activity and heart rate by which can be used for short- or long-term monitoring of the patient’s respiratory status and cardiac activity. This development will provide users with a patient monitoring solution that clearly displays relevant vital parameters – such as lung activity, regionally resolved ventilation visualisation, relative tidal volume, respiratory rate and heart rate – without the need for invasive methods, even in patients in a state of shock.
Funding: BMWi (Funding Code: ZF4364411CR9)
Project duration: 2021–2023
Project partners: University of Leipzig
CODICES
Condition Diagnosis of Earthing Systems
Integrated condition monitoring of distributed earthing systems: The aim is to develop an active electrical measurement method that enables the progression of corrosion – and thus the condition of the earth electrode – to be assessed. Building on this measurement method, a measurement system is to be developed which handles data pre-processing and transmission. To enable the generic use of this new approach, a specialised IoT device (Industry 4.0 component) is being developed and tested as a prototype.
Funding: BMBF (Project Code: 13FH131PX8)
Project duration: 2020–2022
Project partner: Prof. Faouzi Derbel (EET)
EVALIA
The electric vehicle as a controllable load
The energy transition requires a modern electricity grid: as part of the EVALIA project, Prof. Pretschner is working with several research institutions and companies from Germany and Finland to put this into practice. Electric mobility is to be integrated into the energy grid with the help of a smart charging model. There is no need to retrofit electric cars – the innovation lies in the charging points, which handle communication with the electricity grid.
Funding: BMWi (Project No.: 03ETE010A)
Project duration: 2018–2020