Internet‐of‐things architectures for secure cyber–physical spaces: The VISOR experience report
Архитектуры Интернета вещей для безопасных кибер‑физических пространств: отчет о проекте VISOR
2022-09-27
SCID: 54.1/xzasuzhf
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Internet of Things (IoT) architecturesVISOR field study at music festivalcyber–physical spacesfederated devices (drones, CCTV, smartphones, smart glasses)video-based IoT surveillance
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Abstract (AI)
Abstract Internet of things (IoT) technologies are becoming a more and more widespread part of civilian life in common urban spaces, which are rapidly turning into cyber–physical spaces. Simultaneously, the fear of terrorism and crime in such public spaces is ever‐increasing. Due to the resulting increased demand for security, video‐based IoT surveillance systems have become an important area for research. Considering the large number of devices involved in the illicit recognition task, we conducted a field study in a Dutch Easter music festival in a national interest project called VISOR to select the most appropriate device configuration in terms of performance and results. We iteratively architected solutions for the security of cyber–physical spaces using IoT devices. We tested the performance of multiple federated devices encompassing drones, closed‐circuit television, smart phone cameras, and smart glasses to detect real‐case scenarios of potentially malicious activities such as mosh pits and pick‐pocketing. Our results pave the way to select optimal IoT architecture configurations—that is, a mix of CCTV, drones, smart glasses, and camera phones in our case—to make safer cyber–physical spaces' a reality.
Key Findings
1
An iterative architecture approach tested federated devices (drones, CCTV, smartphone cameras, smart glasses) to detect real-case malicious activities like mosh pits and pick‑pocketing.
2
Field study at a Dutch Easter music festival (VISOR project) evaluated IoT device configurations for video-based surveillance in public cyber–physical spaces.
3
Results identify optimal mixed IoT architecture configurations (combining CCTV, drones, smart glasses, camera phones) to improve safety in cyber–physical public spaces.
4
The study demonstrates feasibility of using a heterogeneous federated IoT device set for enhanced security monitoring in crowded urban event environments.
Research Object
Video-based IoT surveillance system architecture for securing cyber–physical public spaces (including federated devices: CCTV, drones, smartphone cameras, smart glasses) as evaluated in the VISOR field study
Research Subject
Selection and evaluation of optimal IoT device configurations and architectural design (performance and detection effectiveness) to detect malicious or risky activities and improve security in cyber–physical public spaces
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2022-09-27
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