Experienced Deep Reinforcement Learning with Generative Adversarial Networks (GANs) for Model-Free Ultra Reliable Low Latency Communication
Ali Taleb Zadeh Kasgari, Walid Saad, Mohammad Mozaffari, H. Vincent, Poor

TL;DR
This paper introduces a novel experienced deep reinforcement learning framework enhanced with GANs for model-free resource allocation in URLLC, achieving high reliability and low latency without prior traffic models.
Contribution
The paper presents a new deep-RL framework combined with GAN-based pre-training to handle extreme network conditions and improve URLLC performance without traffic assumptions.
Findings
Achieves near-optimal reliability and latency performance.
Removes transient training time of conventional deep-RL methods.
Provides a theoretical limit for GAN generator output.
Abstract
In this paper, a novel experienced deep reinforcement learning (deep-RL) framework is proposed to provide model-free resource allocation for ultra reliable low latency communication (URLLC). The proposed, experienced deep-RL framework can guarantee high end-to-end reliability and low end-to-end latency, under explicit data rate constraints, for each wireless without any models of or assumptions on the users' traffic. In particular, in order to enable the deep-RL framework to account for extreme network conditions and operate in highly reliable systems, a new approach based on generative adversarial networks (GANs) is proposed. This GAN approach is used to pre-train the deep-RL framework using a mix of real and synthetic data, thus creating an experienced deep-RL framework that has been exposed to a broad range of network conditions. Formally, the URLLC resource allocation problem is…
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Taxonomy
MethodsConvolution · Dogecoin Customer Service Number +1-833-534-1729
