I am a systems engineer, designing and overseeing the engineering,
business, and management aspects of complex
IT-based biological
systems. I am also a PRINCE2-certified
project manager with a solid background in plant biology.
Electronic Food Chain Inspection System (eFCIS)
The eFCIS is a simplified version of the USDA's
Food Safety and Inspection Service.
The high-level system design partially follows the TOGAF 9.1 recommendations, as well. Moreover, it is composed of
Features List, Business Process Schematics (BPMN 2.0), UX/UI design,
and DB design (
sources are also available).
Plant Observer and Diagnostic System (PODS)
The system uses highly sophisticated contamination- and
infection-estimating models to predict susceptibilities for
several pathogens and pests (fungi, insects, acari).
XHTML microsite above gives a high-level overview about
the system, which is a cloud-based decision support and
tactical plant protection management system with pest and
disease predictions, based on plant forecasting models.
Further details: features list, detailed customer interface,
financial statements,
and detailed Gantt-diagram of the project realisation.
Software Quality Assurance
Software quality assurance (SQA) is a process that assures
that all software engineering processes, methods, activities
and work items are monitored and comply with the defined standards.
The microsite (306.6 MB for 419 files) declares general software development directives.
Software Development Process
Identifying and understanding the present processes of an undocumented software system:
Creating technical documentation, terminology, references.
Designing and Implementing a
Spring Boot 2 Web service for an image processing service
The service is a cloud-based image processing platform, which offers:
Increasing image quality and resolution of uploaded DICOM files. The
highly sophisticated process is based on
the ImageJ Java Library, published by National Institute of Health,
automatically enhances any flaw in the uploaded files.
Engineering Safaty Analysis: Device Hazard Analysis of a Medical Imaging Tool
The Device Hazard Analysis of a Medical Imaging Tool
strictly follows the rules of the EN ISO 14971:2012 standard.
It does contain (1) the identification and listing of steps in the
process where hazards of significance occur; (2) the listing of all
(3) the listing of all preventive measures to control each
hazard.
SysML Modelling
BBCH
Estimator:
Phenological models are well proven tools to forecast phenological
events of grapevine (
Vitis vinifera L.), for example bud burst,
flowering or veraison.
Generic Infection Detector
The Generic Infection Detector (GID) integrates the various infection
detection models embedding them into a definite and uniform evaluation
framework to ensure fine tunable prioritization and the needful mutual
exclusion rules.
UX/UI Design