arXiv · 2502.13352
Integrated Sensing and Communication for 6G Holographic Digital Twins
Abstract
With the advent of 6G networks, offering ultra-high bandwidth and ultra-low latency, coupled with the enhancement of terminal device resolutions, holographic communication is gradually becoming a reality. Holographic digital twin (HDT) is considered one of key applications of holographic communication, capable of creating virtual replicas for real-time mapping and prediction of physical entity states, and performing three-dimensional reproduction of spatial information. In this context, integrated sensing and communication (ISAC) is expected to be a crucial pathway for providing data sources to HDT. This paper proposes a four-layer architecture assisted by ISAC for HDT, integrating emerging paradigms and key technologies to achieve low-cost, high-precision environmental data collection for constructing HDT. Specifically, to enhance sensing resolution, we explore super-resolution techniques from the perspectives of parameter estimation and point cloud construction. Additionally, we focus on multi-point collaborative sensing for constructing HDT, and provide a comprehensive review of four key techniques: node selection, multi-band collaboration, cooperative beamforming, and data fusion. Finally, we highlight several interesting research directions to guide and inspire future work.
Explore related subjects
Keep this discovery
Haijun Zhang, Ziyang Zhang, Xiangnan Liu, Wei Li, Haojin Li, Chen Sun. 2025-02-19. Integrated Sensing and Communication for 6G Holographic Digital Twins. https://arxiv.org/abs/2502.13352
Cite the original work for its findings. Save a collection to share your selection of sources.