论文标题

超出传输位的通信:语义引导的源和频道编码

Communication Beyond Transmitting Bits: Semantics-Guided Source and Channel Coding

论文作者

Dai, Jincheng, Zhang, Ping, Niu, Kai, Wang, Sixian, Si, Zhongwei, Qin, Xiaoqi

论文摘要

古典交流范式专注于通过嘈杂的渠道准确地传输位,而香农理论则对可靠通信速率提供了基本的理论限制。在这种方法中,位均得到平等对待,通信系统忽略了这些位传达或如何使用的含义。可以预见的是,对智力和简洁性的未来沟通将发挥主导作用,连接的智能代理的扩散需要对编码传输范式进行根本性的重新思考,以支持地平线上的新通信形态。最近的“语义通信”概念提供了有希望的研究方向。将语义指导注入编码的传输设计以实现语义感知通信表现出巨大的有效性和可靠性突破的潜力。本文阐明了语义引导的源和频道编码作为语义通信的传输范式,该传输范式可以利用数据语义的多样性和无线通道多样性,以增强整个系统性能。我们介绍一般的系统体系结构和关键技术,并指出有关此主题的一些开放问题。

Classical communication paradigms focus on accurately transmitting bits over a noisy channel, and Shannon theory provides a fundamental theoretical limit on the rate of reliable communications. In this approach, bits are treated equally, and the communication system is oblivious to what meaning these bits convey or how they would be used. Future communications towards intelligence and conciseness will predictably play a dominant role, and the proliferation of connected intelligent agents requires a radical rethinking of coded transmission paradigm to support the new communication morphology on the horizon. The recent concept of "semantic communications" offers a promising research direction. Injecting semantic guidance into the coded transmission design to achieve semantics-aware communications shows great potential for further breakthrough in effectiveness and reliability. This article sheds light on semantics-guided source and channel coding as a transmission paradigm of semantic communications, which exploits both data semantics diversity and wireless channel diversity together to boost the whole system performance. We present the general system architecture and key techniques, and indicate some open issues on this topic.

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