Cross-Layer Encrypted Semantic Communication Framework for Panoramic Video Transmission

Fuente: arXiv
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Main Authors: Gao, Haixiao, Sun, Mengying, Xu, Xiaodong, Xu, Bingxuan, Han, Shujun, Wang, Bizhu, Jiang, Sheng, Dong, Chen, Zhang, Ping
Format: Preprint
Published: 2024
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author Gao, Haixiao
Sun, Mengying
Xu, Xiaodong
Xu, Bingxuan
Han, Shujun
Wang, Bizhu
Jiang, Sheng
Dong, Chen
Zhang, Ping
author_facet Gao, Haixiao
Sun, Mengying
Xu, Xiaodong
Xu, Bingxuan
Han, Shujun
Wang, Bizhu
Jiang, Sheng
Dong, Chen
Zhang, Ping
contents In this paper, we propose a cross-layer encrypted semantic communication (CLESC) framework for panoramic video transmission, incorporating feature extraction, encoding, encryption, cyclic redundancy check (CRC), and retransmission processes to achieve compatibility between semantic communication and traditional communication systems. Additionally, we propose an adaptive cross-layer transmission mechanism that dynamically adjusts CRC, channel coding, and retransmission schemes based on the importance of semantic information. This ensures that important information is prioritized under poor transmission conditions. To verify the aforementioned framework, we also design an end-to-end adaptive panoramic video semantic transmission (APVST) network that leverages a deep joint source-channel coding (Deep JSCC) structure and attention mechanism, integrated with a latitude adaptive module that facilitates adaptive semantic feature extraction and variable-length encoding of panoramic videos. The proposed CLESC is also applicable to the transmission of other modal data. Simulation results demonstrate that the proposed CLESC effectively achieves compatibility and adaptation between semantic communication and traditional communication systems, improving both transmission efficiency and channel adaptability. Compared to traditional cross-layer transmission schemes, the CLESC framework can reduce bandwidth consumption by 85% while showing significant advantages under low signal-to-noise ratio (SNR) conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12776
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cross-Layer Encrypted Semantic Communication Framework for Panoramic Video Transmission
Gao, Haixiao
Sun, Mengying
Xu, Xiaodong
Xu, Bingxuan
Han, Shujun
Wang, Bizhu
Jiang, Sheng
Dong, Chen
Zhang, Ping
Image and Video Processing
Cryptography and Security
Multimedia
In this paper, we propose a cross-layer encrypted semantic communication (CLESC) framework for panoramic video transmission, incorporating feature extraction, encoding, encryption, cyclic redundancy check (CRC), and retransmission processes to achieve compatibility between semantic communication and traditional communication systems. Additionally, we propose an adaptive cross-layer transmission mechanism that dynamically adjusts CRC, channel coding, and retransmission schemes based on the importance of semantic information. This ensures that important information is prioritized under poor transmission conditions. To verify the aforementioned framework, we also design an end-to-end adaptive panoramic video semantic transmission (APVST) network that leverages a deep joint source-channel coding (Deep JSCC) structure and attention mechanism, integrated with a latitude adaptive module that facilitates adaptive semantic feature extraction and variable-length encoding of panoramic videos. The proposed CLESC is also applicable to the transmission of other modal data. Simulation results demonstrate that the proposed CLESC effectively achieves compatibility and adaptation between semantic communication and traditional communication systems, improving both transmission efficiency and channel adaptability. Compared to traditional cross-layer transmission schemes, the CLESC framework can reduce bandwidth consumption by 85% while showing significant advantages under low signal-to-noise ratio (SNR) conditions.
title Cross-Layer Encrypted Semantic Communication Framework for Panoramic Video Transmission
topic Image and Video Processing
Cryptography and Security
Multimedia
url https://arxiv.org/abs/2411.12776