基于张量计算的6G频谱使用框架

Wensheng Zhang, Jingxian Wu, Chengxiang Wang
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摘要

在本文中,我们提出了一个基于张量理论的张量计算的新概念,该概念是为未来的第六代(6G)无线通信系统设计的。定义并分析了两种不同类型的张量,即频谱张量和系统张量,以开发新的6G频谱使用框架。谱张量将高维谱大数据封装成紧张量的形式。系统张量将关键的系统性能,包括数据速率、带宽、延迟、频谱效率和能源效率,总结成一个多维张量。谱张量和系统张量的概念使得高效张量计算工具(如张量补全和张量分解)能够实现独特的基于张量的计算和分析。在新的频谱使用框架中,设计了一种基于值的频谱融合方案。在保证单个用户的个体值的约束下,实现系统值的最大值。提出的张量计算框架在6G无线功能与现实世界的高维数据处理工具(如TensorFlow和张量处理单元(TPU))之间建立了一座桥梁。作者希望本文能在未来的6G无线通信中,为张量计算的研究开辟一个新的领域。
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Tensor-computing-based Spectrum Usage Framework for 6G
In this paper, we coin a new concept of tensor-computing, which is based on tensor theory and designed for future sixth generation (6G) wireless communication systems. Two different types of tensors, namely spectrum-tensor and system-tensor, are defined and analysed to develop a new spectrum usage framework for 6G. The spectrum-tensor encapsulates high dimensional spectrum big data into the format of a compact tensor. The system-tensor summarizes key system performance, including data rate, bandwidth, delay, spectral efficiency, and energy efficiency, into a multi-dimension tensor. The concepts of spectrum-tensor and system-tensor enable unique tensor-based computing and analysis with the help of high efficiency tensor-computing tools, such as tensor completion and tensor decomposition. In the new spectrum usage framework, a value-based spectrum fusion scheme is designed. The maximum system value is achieved under the constraint that the individual value of single user should be guaranteed. The proposed tensor-computing framework builds a bridge between 6G wireless functions with real-world high dimension data processing tools, such as TensorFlow and Tensor Processing Unit (TPU). The authors hope this paper will shine a beam of tensor theory in and open a new research field of tensor-computing for future 6G wireless communications.
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