Conference
Expired
30th May, 2026
SSE - MIPRO 2026 : 9th International Software and Systems Engineering Conference
About the Conference
Scope:
Rapid technology development has radically changed the way how we engineer complex software systems. Here we have to reconsider two important aspects:
1. Complex systems are integrating modern technologies to interconnect humans and machines across various application domains thus changing societies as a whole. The role of the engineering profession has changed from purely functional endover to a society-responsible endeavor. Engineering future software systems would require understanding the constraints of multiple dimensions, including technical, economic, business, political, social, and ethical issues.
2. On the other hand, various modern technologies have changed the way how we engineer these systems. Modern technologies may replace many engineering tasks but we need a deep understanding of the consequences of using modern technologies in engineering these systems. For example, how tools based on Large Language Models (LLM) can be used in engineering complexity, and what are the challenges of its use in SSE?
In that respect, we need to reconsider the engineering profession and understand how to engineer future systems. More precisely the scope of our conference is focused on HOW TO ENGINEER COMPLEX SOFTWARE AND SYSTEMS in terms of:
* Technical aspects of these systems like
- solutions in engineering complex systems that are based on modern technologies (e.g. use of LLMs)
- solutions for automatized operation and management, coping with a variety of software systems across various application domains, their integration, interconnection, and complexity,
- and how to provide high-capacity, faster, more reliable, available, and more secure technologies.
* Sustainable operation across their lifecycle and thus align with global goals of production of greener technologies.
* Responsible, trustworthy, and safe systems engineering methods and practices needed for the networked society of human beings and machines in everyday life.
Topics:
Modern Technology Used in Software and Systems Engineering, LLMs, and AI for SSE
Explainable Artificial Intelligence Solutions for Engineering Complex Systems
Responsible Computing and Engineering Responsive Software Systems
Sustainable Software and System Engineering
Engineering of Autonomous and Software Defined Systems
Engineering Concepts, Design Principles, Architecture, and Smart Software and System Composition
Operation and Management of Complex Software and Systems, Software and Systems in Evolution
Engineering Software System Requirements
Software Engineering Tools, Programming Concepts, Languages, and Frameworks
Design Concepts for Software System Evolution, Adaptability, Maintainability, Reuse
Solutions for Continuous Integration, Run Time Verification and Certification and System Safety
Technology Development Strategies and Innovation Processes for Complex Systems
Human and Machine Interaction with Complex Systems and Software Functions and Compatibility
Challenges of Engineering Systems and Software in Various Application Domains (Manufacturing, Government, Health, Transport)
Metrics for Evaluating Complex Systems and Software
The official language is English.
Rapid technology development has radically changed the way how we engineer complex software systems. Here we have to reconsider two important aspects:
1. Complex systems are integrating modern technologies to interconnect humans and machines across various application domains thus changing societies as a whole. The role of the engineering profession has changed from purely functional endover to a society-responsible endeavor. Engineering future software systems would require understanding the constraints of multiple dimensions, including technical, economic, business, political, social, and ethical issues.
2. On the other hand, various modern technologies have changed the way how we engineer these systems. Modern technologies may replace many engineering tasks but we need a deep understanding of the consequences of using modern technologies in engineering these systems. For example, how tools based on Large Language Models (LLM) can be used in engineering complexity, and what are the challenges of its use in SSE?
In that respect, we need to reconsider the engineering profession and understand how to engineer future systems. More precisely the scope of our conference is focused on HOW TO ENGINEER COMPLEX SOFTWARE AND SYSTEMS in terms of:
* Technical aspects of these systems like
- solutions in engineering complex systems that are based on modern technologies (e.g. use of LLMs)
- solutions for automatized operation and management, coping with a variety of software systems across various application domains, their integration, interconnection, and complexity,
- and how to provide high-capacity, faster, more reliable, available, and more secure technologies.
* Sustainable operation across their lifecycle and thus align with global goals of production of greener technologies.
* Responsible, trustworthy, and safe systems engineering methods and practices needed for the networked society of human beings and machines in everyday life.
Topics:
Modern Technology Used in Software and Systems Engineering, LLMs, and AI for SSE
Explainable Artificial Intelligence Solutions for Engineering Complex Systems
Responsible Computing and Engineering Responsive Software Systems
Sustainable Software and System Engineering
Engineering of Autonomous and Software Defined Systems
Engineering Concepts, Design Principles, Architecture, and Smart Software and System Composition
Operation and Management of Complex Software and Systems, Software and Systems in Evolution
Engineering Software System Requirements
Software Engineering Tools, Programming Concepts, Languages, and Frameworks
Design Concepts for Software System Evolution, Adaptability, Maintainability, Reuse
Solutions for Continuous Integration, Run Time Verification and Certification and System Safety
Technology Development Strategies and Innovation Processes for Complex Systems
Human and Machine Interaction with Complex Systems and Software Functions and Compatibility
Challenges of Engineering Systems and Software in Various Application Domains (Manufacturing, Government, Health, Transport)
Metrics for Evaluating Complex Systems and Software
The official language is English.
Topics of Interest
3 topicsResearch papers are invited in, but not limited to, the following areas:
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