Ph.D. candidate in Ingegneria Meccanica , 41st cycle (2025-2028)
Department of Mechanical and Aerospace Engineering (DIMEAS)
Adjunct lecturer/Adjunct instructor
Department of Mechanical and Aerospace Engineering (DIMEAS)
Profile
PhD
Research topic
Research, development and prototyping of a teleoperated robotic system for rescue operations in confined spaces, specifically designed for artesian wells.
Tutors
Keywords
Biography
My doctoral research project is a continuation of the work started during my master’s thesis and will focus on the development and optimization of teleoperated robotic systems for operations in confined spaces, with a particular emphasis on rescue missions in artesian wells. This research area addresses a real and urgent need: in many geographical regions, artesian wells represent a strategic solution for underground water supply, but they become serious hazards when, once depleted, they are abandoned without proper sealing procedures. These wells are the site of fatal accidents involving mainly children, with traditional rescue operations often failing due to the extreme environmental conditions inside the well and excessively long response times.
My doctoral project, carried out in collaboration with the University of L'Aquila, aims to develop a teleoperated robotic system specifically optimized for rescue in these scenarios. The main goal is the design and implementation of an advanced device capable of assessing environmental conditions, stabilizing the victim to prevent further slipping and performing recovery maneuvers quickly and safely. The research will focus on evolving the existing prototype into a final, integrated, robust and operational system. The work plan will be structured around the following methodological phases:
State-of-the-art review and update: building on the literature already analyzed, a systematic update will be carried out considering recent technological developments in the field. Critical analysis of the current model: assessment of the structural and functional limitations of the existing prototype. Subsystem optimization and validation: the system will be broken down into its main modules and components, each characterized by a specific function. Each module will be redesigned to maximize reliability and validated individually through dedicated testing before integration into the complete system. Mechatronic integration: the optimized modules will be progressively assembled into a single architecture, developing real-time control logic for teleoperation management. Experimental validation and real-scenario testing: the complete system will be tested in several phases. First, laboratory tests will be carried out in a simplified environment, followed by tests in a simulated environment. Finally, if needed, field tests may be performed to verify its effectiveness in real contexts.
Alongside robotic development, the research will explore topics of strong interest in the field of industrial automation, with a particular focus on Soft-PLC architecture. The goal is to investigate the reliability and versatility of platforms based on the IEC 61131-3 standard for the development of low-cost but high-performance control systems, evaluating how these technologies can be used not only for flexible test benches, but also for industrial solutions.
The research activity is also accompanied by attending PhD courses focused on topics closely related to the thesis and the project, which are fundamental to the development of the study. The program also includes a few hours of teaching assistance.
Teaching
Teachings
Master of Science
- Automazione a fluido. A.A. 2026/27, INGEGNERIA MECCANICA. Collaboratore del corso
- Mechanical systems automation. A.A. 2025/26, INGEGNERIA MECCANICA (MECHANICAL ENGINEERING). Collaboratore del corso
- Automazione dei sistemi meccanici. A.A. 2025/26, INGEGNERIA MECCANICA. Collaboratore del corso
Publications
Latest publications View all publications in Porto@Iris
- Astuti, Simone; Maffiodo, Daniela; Raparelli, Terenziano (2027)
Environmental Monitoring System for Rescue Operations in Artesian Wells. In: The Sixth International Conference of IFToMM ITALY, Foligno (ITA), 9-11 september 2026, pp. 516-525. ISSN 2211-0984. ISBN: 9783032359698
Contributo in Atti di Convegno (Proceeding) - Astuti, Simone; Di Michele, A.; Maffiodo, D.; Mazza, L.; Trivella, A.; Raparelli, T. (2027)
Design and Experimental Evaluation of Gripping Mechanisms for Automated Sewing of Biological Heart Valves. In: The Sixth International Conference of IFToMM ITALY, Foligno (ITA), 9-11 settembre 2026, pp. 216-225. ISSN 2211-0984. ISBN: 9783032359698
Contributo in Atti di Convegno (Proceeding) - Astuti, Simone; Mazza, Luigi; Raparelli, Terenziano (2026)
Controllo di un'automazione con Raspberry Pi. In: OLEODINAMICA PNEUMATICA, pp. 24-29. ISSN 2421-4388
Contributo su Rivista