Joint Adaptive OFDM and Reinforcement Learning Design for Autonomous Vehicles: Leveraging Age of Updates
Mamady Delamou, Ahmed Naeem, Huseyin Arslan, El Mehdi Amhoud

TL;DR
This paper proposes a reinforcement learning-based adaptive OFDM system for autonomous vehicles that dynamically manages communication and sensing, improving stability, data rate, and velocity resolution in uncertain environments.
Contribution
It introduces a novel joint adaptive OFDM and reinforcement learning framework leveraging age of updates for AVs, enhancing communication stability and sensing accuracy.
Findings
Reinforcement learning improves communication stability in dynamic environments.
Adaptive OFDM enhances velocity resolution for sensing.
Proposed method outperforms existing designs in simulations.
Abstract
Millimeter wave (mmWave)-based orthogonal frequency-division multiplexing (OFDM) stands out as a suitable alternative for high-resolution sensing and high-speed data transmission. To meet communication and sensing requirements, many works propose a static configuration where the wave's hyperparameters such as the number of symbols in a frame and the number of frames in a communication slot are already predefined. However, two facts oblige us to redefine the problem, (1) the environment is often dynamic and uncertain, and (2) mmWave is severely impacted by wireless environments. A striking example where this challenge is very prominent is autonomous vehicle (AV). Such a system leverages integrated sensing and communication (ISAC) using mmWave to manage data transmission and the dynamism of the environment. In this work, we consider an autonomous vehicle network where an AV utilizes its…
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Taxonomy
TopicsDistributed Sensor Networks and Detection Algorithms · Age of Information Optimization · Advanced MIMO Systems Optimization
