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Collision-Aware Data Delivery Framework for Connected Vehicles via Edges

Title
Collision-Aware Data Delivery Framework for Connected Vehicles via Edges
Author(s)
Vaddhiparthy, Svsln Surya SuhasCherukara, Joseph JohnGangadharan, DeepakKim, BaekGyu
Issued Date
2023-10-13
Citation
IEEE Vehicular Technology Conference, pp.1 - 7
Type
Conference Paper
ISBN
9798350329285
ISSN
2577-2465
Abstract
With the rapid advancements in communication technologies, the paradigm of connected vehicles is drastically transforming the automotive industry, enabling efficient data and service delivery to vehicles via edges. Various works have considered data delivery without a Medium Access Layer (MAC), which can result in multiple data frame collisions in the network. The time-slot-based MAC layer strategy uses slot assignment to ensure collision-free data delivery for multiple vehicles across various transmission channels at each edge. However, the increasing requests from various vehicular nodes can increase network congestion, thus servicing fewer vehicles. In the current work, we propose an optimization framework for collision-aware data delivery considering two state-of-art MAC protocols, HCCA and VeMAC. The proposed framework minimizes the global slot utilization cost for edge-to-vehicle data delivery, considering vehicle flow, edge resources, and vehicle overlaps while avoiding possible data transmission collisions. Further, we demonstrate the practicality of the framework in terms of the number of vehicles served, global slot utilization cost, and bandwidth cost. We further analyze the framework with differences in vehicle densities for various problem sizes using a real-world traffic scenario. © 2023 IEEE.
URI
http://hdl.handle.net/20.500.11750/47569
DOI
10.1109/VTC2023-Fall60731.2023.10333507
Publisher
Institute of Electrical and Electronics Engineers Inc.
Related Researcher
  • 김백규 Kim, BaekGyu
  • Research Interests 사이버물리 시스템; Cyber-Physical Systems(CPS); 사물인터넷; Internet-Of-Things(IoT); Embedded Software; Formal Method; Software Engineering; model-based development; hardware/software integration; distributed computing; real-time systems
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Appears in Collections:
Department of Electrical Engineering and Computer Science High-Assurance Software Systems Lab. 2. Conference Papers

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