Srđan Čapkun

Srđan Čapkun
Prof. Dr.
Srđan Čapkun
PI
Cyber physical systems are the systems of the future. To be deployed they need to be protected from adversaries to avoid digital and physical harm.

Srdjan Capkun (Srđan Čapkun) is a Full Professor in the Department of Computer Science, ETH Zurich and Director of the Zurich Information Security and Privacy Center (ZISC). He was born in Split, Croatia. He received his Dipl.Ing. Degree in Electrical Engineering / Computer Science from the University of Split in 1998, and his Ph.D. degree in Communication Systems from EPFL in 2004. Prior to joining ETH Zurich in 2006 he was a postdoctoral researcher in the Networked & Embedded Systems Laboratory (NESL), University of California Los Angeles and an Assistant Professor in the Informatics and Mathematical Modelling Department, Technical University of Denmark (DTU). His research interests are in system and network security. His focus areas are wireless security (in particular secure positioning), and system security where he focuses on trusted computing and blockchain technologies. He is a co-​founder of 3db Access, a company focusing on secure distance measuement and proximity-​based access control, and of Sound-​Proof a spin-​off focusing on usable on-​line authentication. In 2016 he received an ERC Consolidator Grant for a project on securing positioning in wireless networks. He is a fellow of the ACM.

Scientific Publications

Published
Time for Change: How Clocks Break UWB Secure Ranging
ArXiv
to Appear
EdgeTDC: On the Security of Time Difference of Arrival Measurements in CAN Bus Systems
Network and Distributed System Security Symposium (NDSS)
Published
Ghost Peak: Practical Distance Reduction Attacks Against HRP UWB Ranging
31st USENIX Security Symposium (USENIX Security 22
Pages 1343-1359
Published
LTrack: Stealthy Tracking of Mobile Phones in LTE
31st USENIX Security Symposium (USENIX Security 22)
Pages 1291-1306

Research projects

Title
Principal Investigators

Security of the Smart Manufacturing Systems

Summary

The smart manufacturing system (SMS) is one of the fourth industrial revolution cornerstones, also known as Industry 4.0. SMS enables a demand-driven, highly adaptable manufacturing process instead of a very static traditional manufacturing system that targets producing a specific product set. A typical SMS consists of heterogeneous, highly-programmable components connected over the networks. Moreover, SMS relies on the HMIs for the IO operations with the human operators. Such complexity also opens up several attack surfaces that could be exploited. Such attacks include producing defective products, increasing downtime, passing wrong movement parameters to the robotic arm to harm a human being, manipulating HMI to confuse the human operators, and many more. Some existing studies look into the different security aspects of the SMS. In this project, we want to understand the different security surfaces of smart manufacturing, much more that were previously unnoticed. 

People involved

Security of the Smart Manufacturing Systems

The smart manufacturing system (SMS) is one of the fourth industrial revolution cornerstones, also known as Industry 4.0. SMS enables a demand-driven, highly adaptable manufacturing process instead of a very static traditional manufacturing system that targets producing a specific product set. A typical SMS consists of heterogeneous, highly-programmable components connected over the networks. Moreover, SMS relies on the HMIs for the IO operations with the human operators. Such complexity also opens up several attack surfaces that could be exploited. Such attacks include producing defective products, increasing downtime, passing wrong movement parameters to the robotic arm to harm a human being, manipulating HMI to confuse the human operators, and many more. Some existing studies look into the different security aspects of the SMS. In this project, we want to understand the different security surfaces of smart manufacturing, much more that were previously unnoticed. 

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