论文标题
元语的语义感知信息传输:竞赛理论方法
Semantic-Aware Sensing Information Transmission for Metaverse: A Contest Theoretic Approach
论文作者
论文摘要
随着网络和计算机技术的发展,虚拟网络空间不断发展,元代表是主要代表。作为支持元评估的不可替代的技术,从物理世界到元世界的传感信息传输至关重要。受到新兴语义交流的启发,在本文中,我们提出了一个语义传输框架,用于将传感信息从物理世界传输到元世界。利用对传感信息的深入理解,我们定义了语义碱基,首次实现了传感数据的语义编码。因此,需要传输的传感数据量大大减少。与经历数据降低并需要数据恢复的常规方法不同,我们的方法在不保持性能的同时实现了无数据恢复的传感目标。为了进一步提高元服务质量,我们介绍了竞赛理论,以创建一种激励机制,激励用户更频繁地上传数据。实验结果表明,语义编码后的平均数据量减少到编码前的27.87%,同时确保传感性能。此外,与统一奖励计划相比,拟议的基于理论的激励机制将数据上传频率的总和增加了27.47%。
With the advancement of network and computer technologies, virtual cyberspace keeps evolving, and Metaverse is the main representative. As an irreplaceable technology that supports Metaverse, the sensing information transmission from the physical world to Metaverse is vital. Inspired by emerging semantic communication, in this paper, we propose a semantic transmission framework for transmitting sensing information from the physical world to Metaverse. Leveraging the in-depth understanding of sensing information, we define the semantic bases, through which the semantic encoding of sensing data is achieved for the first time. Consequently, the amount of sensing data that needs to be transmitted is dramatically reduced. Unlike conventional methods that undergo data degradation and require data recovery, our approach achieves the sensing goal without data recovery while maintaining performance. To further improve Metaverse service quality, we introduce contest theory to create an incentive mechanism that motivates users to upload data more frequently. Experimental results show that the average data amount after semantic encoding is reduced to about 27.87% of that before encoding, while ensuring the sensing performance. Additionally, the proposed contest theoretic based incentive mechanism increases the sum of data uploading frequency by 27.47% compared to the uniform award scheme.