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FERRETTI Ivan

FERRETTI Ivan

Docenti di ruolo di IIa fascia
Department of Civil, Environmental, Architectural, Engineering and Mathematics
Course Catalogue:
https://unibs.coursecatalogue.cineca.it/docente-ma...

Gruppo 09/IIND-05 - IMPIANTI INDUSTRIALI MECCANICI

Settore IIND-05/A - Impianti industriali meccanici
Sustainable Supply Chains; Energy-Efficient Production Planning
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  •  ivan.ferretti@unibs.it
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Communications

Curriculum Vitae

Personal details
• Name: Ivan Ferretti
• Place and date of birth: Mantova 06/03/78
• Nationality: Italian
• Address: via Fiume Chiese 2/4 - Volta Mantovana – Mantova - Italy
• Tel. office: +393471213998
• E-Mail: ivan.ferretti@unibs.it

Work experience
• Job title: Research Fellow (RtDB)
• Starting date: November 2022 - today
• Employer: Department of Civil, Environmental, Architectural Engineering and Mathematics – University of Brescia
• The research activity of Dr. Ivan Ferretti has been mainly devoted to energy efficiency optimization in industrial plants. During the research activity, analytical investigations and extensive experimental works have been carried out, using simulation software or analytical modelling software for optimization of linear/nonlinear models. Moreover, several specific heuristics algorithms have been developed, also addressed to the solution of real industrial situations. The main areas in which the research and scientific work have been articulated are reported hereafter: 1) Analytical modelling and simulation of energy efficiency optimization in industrial plants problems 2) Energy management and use of renewable resource 3) Sustainable Supply Chain - Green Supply Chain.

Education and training

• 2003 - Degree in Industrial Engineering – at the Mechanical Engineering Department of the University of Brescia (Italy)
• 2008 - Doctorate degree in “Planning and management of integrated logistic-productive systems” at the Mechanical Engineering Department of the University of Brescia (Italy); title of the dissertation: " Simulative and analytical models for reverse and traditional logistics systems"

Research projects
Team coordinator of several international and national projects as (last 10 years):
• 2023 – today Renewable Energy and Energy Efficiency in the Value Chain (REEValue) - LIFE22-CET-REEValue - Grant Agreement 101119828
• 2023 – today Prescriptive digital twins for cognitive-enriched competency development of workforce of the future in smart factories (RESILIENCE) – PRIN-PNRR (Ministry of University and Research)
• 2019 – 2022 Improving Cold Chain Energy Efficiency (ICCEE) - Grant Agreement 847040
• 2014 – 2016 Smart Campus as Urban Open Labs (SCUOLA) - POR FESR 2007-2013 (Lombardy Region)
• 2014 – 2016 Disasters and emergencies management for safety and security in industrial plants (DIEMS-SSP) PRIN (Ministry of University and Research)
• 2013 – 2015 Active Refrigerated Containers for the LTL – Less than Truck Load - logistic market (COLDTAINER) - EU Project CIP-EIP-Eco-Innovation-2012
• 2010 – 2012 Technology and innovation for widespread energy savings and efficiency (TREND) - POR FESR 2007-2013 EU (Lombardy Region)

Digital skills
• Programming: VBA, ASP.NET, SQL, Java, CSS
• Simulation: Arena, Flexsim, Anylogic
• ERP: SAP
• Optimization and analysis: MATLAB, MINITAB, MPL, LINGO

Language competence
• Mother language: Italian
• Other languages: English


Scientific publications Author of over 35 publications refereed on Web of Science with H-index 11 (2024). Following a selection of the paper:
• (2023) Ferretti, I., Marchi, B., Zanoni, S., Zavanella, L.E., Analysis of Temperature Control Strategy on Energy Consumption in Buildings with Intermittent Occupancy. Energies, 2023, 16(3), 1208. DOI: 10.3390/en16031208
• (2023) Ferretti, I., Glock, C.H., Zanoni, S., Integration of power energy aspects into the Economic Lot Scheduling Problem Computers and Industrial Engineering, 2023, 186, 109756 DOI: 10.1016/j.cie.2023.109756
• (2019) Marchi, B., Zanoni, S., Ferretti, I., Energy efficiency investments in industry with uncertain demand rate: Effects on the specific energy consumption. Energies, 13(1), 161. DOI: 10.3390/en13010161
• (2019) Zavanella, L.E., Marchi, B., Zanoni, S., Ferretti, I., Energy considerations for the economic production quantity and the joint economic lot sizing. Journal of Business Economics, 89(7), 845-865. DOI: 10.1007/s11573-019-00933-6
• (2018) Marchi, B., Zanoni, S., Ferretti, I., Zavanella, L.E., Stimulating investments in energy efficiency through supply chain integration. Energies, 11(4), 858 DOI: 10.3390/en11040858
• (2018) Ferretti, I., Mazzoldi, L., Zanoni, S., Environmental impacts of cold chain distribution operations: A novel portable refrigerated unit. International Journal of Logistics Systems and Management 31(2), 267-297 DOI: 10.1504/IJLSM.2018.094938
• (2015) Zavanella, L., Zanoni, S., Ferretti, I., Mazzoldi, L., Energy demand in production systems: A Queuing Theory perspective. International Journal of Production Economics 170, 393-400 DOI: 10.1016/j.ijpe.2015.06.019
• (2007) Ferretti, I., Zanoni, S., Zavanella, L., Diana, A., Greening the aluminium supply chainInternational Journal of Production Economics 108(1-2), 236-245 DOI: 10.1016/j.ijpe.2006.12.037


According to law 679/2016 of the Regulation of the European Parliament of 27th April 2016, I hereby express my consent to process and use my data provided in this CV.


Date Signature
07/05/24

Fields (6)


85.42.00 - Istruzione universitaria e post-universitaria; accademie e conservatori

PE8_11 - Environmental engineering, e.g. sustainable design, waste and water treatment, recycling, regeneration or recovery of compounds, carbon capture & storage - (2022)

PE8_9 - Production technology, process engineering - (2022)

SH1_10 - Management; marketing; organisational behaviour; operations management - (2016)

Goal 12: Responsible consumption and production

Goal 7: Affordable and clean energy

Free text keywords (2)

ENERGY EFFICIENCY
SUSTAINABLE SUPPLY CHAIN
No Results Found

Research fields

ENERGY-EFFICIENT PRODUCTION PLANNING: MODELS AND IMPLEMENTATIONS The aim of energy-efficient production planning models is to compute production plans which do not only take account of traditional production planning objectives, such as the minimization of inventory holding cost, setup cost, or total completion time, but also of energy-related objectives, such as the minimization of energy consumption, energy cost, or energy-related greenhouse gas (GHG) emissions, and of energy-related constraints, such as the compliance with a maximum contracted power demand or with a GHG emission constraint. The research focuses about the development of energy-efficient production planning models and their implementations in industry.
No Results Found

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