Results show that perception message generation and radio access mechanisms are tightly coupled and should be jointly designed to maximize the benefits of collective perception services.
Abstract
Vehicles and roadside infrastructure are increasingly equipped with sensors capable of perceiving their surroundings. Sharing this information through vehicle-to-everything (V2X) communications is a key enabler of Day-2 applications and is supported by the ETSI collective perception service (CPS). While CPS is expected to play a fundamental role in future intelligent transportation systems, its operation may significantly increase channel load, posing challenges in terms of radio resource utilization, communication reliability, and information management. This paper reviews the current status of CPS standardization and investigates its impact in dense deployment scenarios where connected vehicles communicate through fifth-generation (5G) New Radio-V2X (NR-V2X) sidelink (SL) communications. The main contribution is a realistic evaluation of communication reliability, latency, channel occupancy, and information usefulness under different object-selection strategies for collective perception messages. The analysis is conducted through a network-level simulation framework integrating empirical object traces derived from real-world datasets, thereby avoiding the limitations of synthetic traffic models. Results show that perception message generation and radio access mechanisms are tightly coupled and should be jointly designed to maximize the benefits of collective perception services.
Cooperative perception can improve the situational awareness of connected and autonomous vehicles by exchanging complementary sensing information among nearby agents. However, systematic multi-vehicle cooperation also increases vehicle-to-everything (V2X) communication demand, processing overhead, and operational resou...
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Vehicle-to-everything (V2X) communication has become an end-to-end cyber–physical evidence problem rather than a radio-interface problem alone: sensed events, transmitted messages, edge computation, trust decisions, and control or service outcomes must be evaluated as a connected chain. The nearest recent surveys clari...
Public networks deploying 5G-Advanced technology are expected to support large-scale connected and cooperative vehicular services. To this end, 3GPP has enabled the deployment of Day 1 V2X safety services over public cellular networks, which provide the global coverage and low latencies these services require. However,...
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Connected and Automated Vehicles (CAVs) rely on Vehicle-to-Everything (V2X) communication to enable cooperative perception, coordination, and safety-critical driving decisions. However, conventional V2X communication remains largely bit-centric and does not inherently account for the meaning, context, or task relevance...
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