For the upcoming 6G wireless networks, a new wave of applications and services will demand ultra-high data rates and reliability. To this end, future wireless systems are expected to pave the way for entirely new fundamental air interface technologies to attain a breakthrough in spectrum efficiency (SE). This article discusses a new paradigm, named generalized polarization transform (GPT), to achieve an integrated design of coding, modulation, multi-antenna, multiple access, etc., in a real sense. The GPT enabled air interface develops far-reaching insights that the joint optimization of critical air interface ingredients can achieve remarkable gains on SE compared with the state-of-the-art module-stacking design.
翻译:对于即将到来的6G无线网络来说,新一波的应用和服务将要求超高的数据率和可靠性。为此,预期未来的无线系统将为全新的基本航空界面技术铺平道路,以便在频谱效率方面实现突破(SE ) 。 文章讨论了一个新的范式,称为普遍两极分化变换(GPT),以在现实意义上实现编码、调制、多连接、多重接入等综合设计。 GPT使空气界面能够产生深远的洞察力,即与最先进的模块组合设计相比,关键航空界面要素的联合优化可以在SE上取得显著成果。