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Quantum Semantic Communications for Resource-Efficient Quantum Networking
DOI:10.1109/LCOMM.2024.3361852.png)
摘要
En 中文
Quantum communication networks (QCNs) utilize quantum mechanics for secure information transmission, but the reliance on fragile and expensive photonic quantum resources renders QCN resource optimization challenging. Unlike prior QCN works that relied on blindly compressing direct quantum embeddings of classical data, this letter proposes a novel quantum semantic communications (QSC) framework exploiting advancements in quantum machine learning and quantum semantic representations to extracts and embed only the relevant information from classical data into minimal high-dimensional quantum states that are accurately communicated over quantum channels with quantum communication and semantic fidelity measures. Simulation results indicate that, compared to semantic-agnostic QCN schemes, the proposed framework achieves approximately 50-75% reduction in quantum communication resources needed, while achieving a higher quantum semantic fidelity.
Keyword:
Semantics
Quantum state
Quantum entanglement
Quantum communication
Quantum mechanics
Photonics
Hilbert space
Quantum networks
semantic communications
q-means clustering
semantic representation
fidelity
期刊
IF:
4.4
论文数:
1.3W
被引数:
2.2W
机构
引用论文
The Role of Fidelity in Goal-Oriented Semantic Communication: A Rate Distortion Approach保真度在面向目标的语义通信中的作用: 速率失真方法
Physics-Informed Quantum Communication Networks: A Vision Toward the Quantum Internet基于物理学的量子通信网络: 面向量子互联网的愿景
IEEE NETWORK
IF6.3

