LSTM-Based Power Delay Profile Predictions for Intra-Bus Wireless Propagation

Fuente: arXiv
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Hauptverfasser: Shukla, Rajeev, Verma, Atharva, Chandra, Aniruddha, Zeleny, Ondrej, Zavorka, Radek, Blumenstein, Jiri, Prokes, Ales, Wojtun, Jaroslaw, Kelner, Jan M., Ziolkowski, Cezary, Ciuonzo, Domenico
Format: Preprint
Veröffentlicht: 2026
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author Shukla, Rajeev
Verma, Atharva
Chandra, Aniruddha
Zeleny, Ondrej
Zavorka, Radek
Blumenstein, Jiri
Prokes, Ales
Wojtun, Jaroslaw
Kelner, Jan M.
Ziolkowski, Cezary
Ciuonzo, Domenico
author_facet Shukla, Rajeev
Verma, Atharva
Chandra, Aniruddha
Zeleny, Ondrej
Zavorka, Radek
Blumenstein, Jiri
Prokes, Ales
Wojtun, Jaroslaw
Kelner, Jan M.
Ziolkowski, Cezary
Ciuonzo, Domenico
contents Longlshort-term memory (LSTM) is a deep learning model that can capture long-term dependencies of wireless channel models and is highly adaptable to short-term changes in a wireless environment. This paper proposes a simple LSTM model to predict the channel transfer function (CTF) for a given transmitter-receiver location inside a bus for the 60 GHz millimetre wave band. The average error of the derived power delay profile (PDP) taps, obtained from the predicted CTFs, was less than 10% compared to the ground truth.
format Preprint
id arxiv_https___arxiv_org_abs_2603_19707
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle LSTM-Based Power Delay Profile Predictions for Intra-Bus Wireless Propagation
Shukla, Rajeev
Verma, Atharva
Chandra, Aniruddha
Zeleny, Ondrej
Zavorka, Radek
Blumenstein, Jiri
Prokes, Ales
Wojtun, Jaroslaw
Kelner, Jan M.
Ziolkowski, Cezary
Ciuonzo, Domenico
Signal Processing
94A40, 94A05, 94A12, 94A17
E.4; H.4.3
Longlshort-term memory (LSTM) is a deep learning model that can capture long-term dependencies of wireless channel models and is highly adaptable to short-term changes in a wireless environment. This paper proposes a simple LSTM model to predict the channel transfer function (CTF) for a given transmitter-receiver location inside a bus for the 60 GHz millimetre wave band. The average error of the derived power delay profile (PDP) taps, obtained from the predicted CTFs, was less than 10% compared to the ground truth.
title LSTM-Based Power Delay Profile Predictions for Intra-Bus Wireless Propagation
topic Signal Processing
94A40, 94A05, 94A12, 94A17
E.4; H.4.3
url https://arxiv.org/abs/2603.19707