Exploring the Future of Cyber-Physical Systems: Innovations, Challenges, and Opportunities with Prof. Renato Mancuso - Director of the Cyber-Physical Systems Lab
Exploring the Future of Cyber-Physical Systems: Innovations, Challenges, and Opportunities with Prof. Renato Mancuso - Director of the Cyber-Physical Systems Lab
Who will you meet ?
Renato Mancuso
Associate professor in the Computer Science Department & Director of the Cyber-Physical Systems Lab
Boston University | Graduate School of Arts & Sciences Renato Mancuso is an associate professor in the Computer Science Department at Boston University (BU) where he also covers the role of director of the Cyber-Physical Systems Lab. Before joining BU in 2017, Renato received his Ph.D. from the Department of Computer Science at the University of Illinois at Urbana-Champaign. He received a B.S. in Computer Engineering with honors (2009) and a M.S. in Computer Engineering with honors (2012) from the University of Rome “Tor Vergata”. He is particularly interested in high-performance cyber-physical systems, focusing on techniques to achieve controllable timeliness for safety-critical applications in complex accelerator-enabled embedded systems. With his research group at BU, he has pioneered software/hardware techniques to perform fine-grained performance profiling and management, with a specific focus on practical approaches that can be used in emerging hybrid (CPU+FPGA) platforms. He has also extensive expertise with applications on fixed-wing and multi-rotor aircraft, and autonomous ground vehicles. His research articles received multiple awards at top-ranking international conferences in the field—including multiple Best (Student) Paper, Outstanding Paper, Best Demo, and Best Presentation awards. Prof. Mancuso also received the NSF CAREER Award in 2023 and the Gerald and Deanne Gitner Family Award for Innovation in Teaching with Technology. His research has been supported by both federal agencies and industrial partners such as Bosch, Red Hat, Cisco, and Xilinx. He is a senior member of the IEEE and a member of the ACM SIGBED community. His Cyber-Physical Systems Lab recruits motivated master and Ph.D. students with interest and skills ranging from robotics, to operating systems, to virtualization technologies, to FPGA development.
Mark Khan
Director, Master’s Marketing & Enrollment
Boston University | Graduate School of Arts & Sciences Mark Khan is the Director of Master's Marketing & Enrollment at Boston University’s Graduate School of Arts & Sciences, a role he has held since 2022. With nearly three years of experience, Mark oversees marketing strategies and enrollment initiatives for master’s programs, helping to drive student recruitment and engagement. Based in Boston, Massachusetts, he ensures that the university’s programs attract top talent and meet their enrollment goals.In this insightful session with Prof. Renato Mancuso, Associate Professor in the Computer Science Department at Boston University and Director of the Cyber-Physical Systems Lab. Prof. Mancuso is a leading researcher in high-performance cyber-physical systems, focusing on safety-critical applications, embedded systems, and hybrid computing architectures. In this session, he will share his expertise on controllable timeliness in cyber-physical systems, cutting-edge research on CPU+FPGA platforms, and real-world applications in robotics, autonomous vehicles, and embedded systems. He also discusses emerging trends, challenges, and opportunities in the field, offering valuable insights for students and professionals interested in robotics, operating systems, and virtualization technologies. Don't miss this opportunity to engage with a distinguished researcher and learn about the future of cyber-physical systems innovation!
Gain insights into the fundamentals of CPS
Learn about techniques to ensure controllable timeliness in CPS
Explore advancements in hybrid computing architectures (CPU+FPGA)
Discover groundbreaking research methodologies and real-world case studies from Prof. Mancuso’s work
Learn about real-world use cases of CPS in industries
Gain insights into the fundamentals of CPS
Learn about techniques to ensure controllable timeliness in CPS
Explore advancements in hybrid computing architectures (CPU+FPGA)
Discover groundbreaking research methodologies and real-world case studies from Prof. Mancuso’s work
Learn about real-world use cases of CPS in industries
Exclusive Application Fee Waivers
Gain valuable advice on pursuing research in CPS
Insights into the university and its programs
Exclusive SEED Scholarships
Networking Opportunity
Exclusive Application Fee Waivers
Gain valuable advice on pursuing research in CPS
Insights into the university and its programs
Exclusive SEED Scholarships
Networking Opportunity
Located in one of the world’s premier educational hubs, Boston University’s College of Arts & Sciences is the largest college within BU and a cornerstone of the University’s academic excellence. With four divisions—Humanities, Natural Sciences, Social Sciences, and Computational Sciences—the Graduate School of Arts & Sciences (GRS) offers a wide-ranging curriculum that fuels intellectual curiosity, fosters interdisciplinary collaboration, and prepares students to address complex global challenges. Its mission emphasizes not only academic rigor but also cultivating leaders who are globally minded and socially responsible, with Boston itself serving as an extension of the classroom through rich cultural, professional, and research opportunities. GRS is part of a university community connected by a global network of more than 460,000 alumni across over 180 countries. This reach reflects BU’s deep ties to worldwide progress and its ongoing commitment to shaping graduates who excel in their fields. The University’s strong standing is reinforced by recognition in the Times Higher Education Global University Employability Ranking (2022), where BU placed among the top 25 U.S. institutions for preparing students to succeed in the workforce. CAS celebrates diversity of thought and perspective, ensuring that students from all backgrounds can thrive, contribute to world-class research, and advance innovative solutions to the challenges of tomorrow.
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