LSTM-Based Distributed Conditional Generative Adversarial Network For Data-Driven 5G-Enabled Maritime UAV Communications
Iftikhar Rasheed, Muhammad Asif, Asim Ihsan, Wali Ullah Khan, Manzoor, Ahmed, Khaled Rabie

TL;DR
This paper proposes an LSTM-based distributed CGAN model to improve channel estimation and data rates for 5G maritime UAV communications, demonstrating higher accuracy and robustness compared to existing methods.
Contribution
It introduces a novel LSTM-DCGAN architecture for channel modeling and estimation in 5G maritime UAV networks, enhancing learning efficiency and data transmission performance.
Findings
LSTM-DCGAN achieves higher accuracy in channel estimation.
The proposed model attains increased data rates for downlink transmission.
The architecture is robust to local training errors.
Abstract
5G enabled maritime unmanned aerial vehicle (UAV) communication is one of the important applications of 5G wireless network which requires minimum latency and higher reliability to support mission-critical applications. Therefore, lossless reliable communication with a high data rate is the key requirement in modern wireless communication systems. These all factors highly depend upon channel conditions. In this work, a channel model is proposed for air-to-surface link exploiting millimeter wave (mmWave) for 5G enabled maritime unmanned aerial vehicle (UAV) communication. Firstly, we will present the formulated channel estimation method which directly aims to adopt channel state information (CSI) of mmWave from the channel model inculcated by UAV operating within the Long Short Term Memory (LSTM)-Distributed Conditional generative adversarial network (DCGAN) i.e. (LSTM-DCGAN) for each…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Telecommunications and Broadcasting Technologies · Wireless Signal Modulation Classification
MethodsHuMan(Expedia)||How do I get a human at Expedia? · Convolution · *Communicated@Fast*How Do I Communicate to Expedia? · Batch Normalization · Deep Convolutional GAN
