Joint adaptive ofdm and reinforcement learning design for autonomous vehicles: leveraging age of updates

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Küçük Resim

Tarih

2025

Dergi Başlığı

Dergi ISSN

Cilt Başlığı

Yayıncı

Erişim Hakkı

info:eu-repo/semantics/openAccess
Attribution-NonCommercial-NoDerivatives 4.0 International

Özet

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 queue state information (QSI) and channel state information (CSI) in conjunction with reinforcement learning techniques to manage communication and sensing. This enables the AV to achieve two primary objectives: establishing a stable communication link with other AVs and accurately estimating the velocities of surrounding objects with high resolution. The communication performance is therefore evaluated based on the queue state, the effective data rate, and the discarded packets rate. In contrast, the effectiveness of the sensing is assessed using the velocity resolution. In addition, we exploit adaptive OFDM techniques for dynamic modulation, and we suggest a reward function that leverages the age of updates to handle the communication buffer and improve sensing. The system is validated using advantage actor-critic (A2C) and proximal policy optimization (PPO). Furthermore, we compare our solution with the existing design and demonstrate its superior performance by computer simulations.

Açıklama

Anahtar Kelimeler

Age of Updates, Autonomous Vehicles, Integrated Sensing and Communication, Optimization, Reinforcement Learning, Waveform

Kaynak

IEEE Open Journal of Vehicular Technology

WoS Q Değeri

Q1

Scopus Q Değeri

Q1

Cilt

6

Sayı

Künye

Delamou, M., Naeem, A., Arslan, H. ve Amhoud, E. M. (2025). Joint adaptive ofdm and reinforcement learning design for autonomous vehicles: leveraging age of updates. IEEE Open Journal of Vehicular Technology, 6, 45-470. http://dx.doi.org/10.1109/OJVT.2025.3530008