论文标题
6G无线系统:视觉,需求,挑战,见解和机遇
6G Wireless Systems: Vision, Requirements, Challenges, Insights, and Opportunities
论文作者
论文摘要
移动通信每十年左右就经历了一代变化。但是,所谓的“ G”之间的时差也正在减少。尽管第五代(5G)系统已成为商业现实,但对5G以上的系统已经引起了重大兴趣,我们将其称为无线系统的第六代(6G)。与已经发表的有关该主题的论文相反,我们以自上而下的方法对6G进行了划点。我们对6G系统进行了整体讨论,从生活方式和社会变化开始,推动了下一代网络的需求。接下来是对启用6G应用程序所需的技术要求的讨论,基于我们剖析关键挑战,以及在开放系统互连堆栈的所有层中实际可实现的系统解决方案的可能性。由于许多6G应用程序中的许多应用程序都需要访问更多的频谱,因此对100 GHz和1 THz之间的频率的利用变得至关重要。因此,6G生态系统将具有多种频段范围,范围从6 GHz以下到1 THz。我们全面地表征了必须克服的局限性,以实现这些频段中的工作系统;并提供与下一代核心网络,新的调制和编码方法,新颖的多个访问技术,天线阵列,波浪传播,射频收发器设计以及实时信号处理有关的物理以及更高层挑战的独特观点。我们严格地讨论未来核心网络所需的基本变化,这些变化是时间敏感应用程序延迟的主要来源。在评估关键6G技术的优势和劣势的同时,我们将在未来十年相对于可能的事情而言可以实现的目标。
Mobile communications have been undergoing a generational change every ten years or so. However, the time difference between the so-called "G's" is also decreasing. While fifth-generation (5G) systems are becoming a commercial reality, there is already significant interest in systems beyond 5G, which we refer to as the sixth-generation (6G) of wireless systems. In contrast to the already published papers on the topic, we take a top-down approach to 6G. We present a holistic discussion of 6G systems beginning with lifestyle and societal changes driving the need for next generation networks. This is followed by a discussion into the technical requirements needed to enable 6G applications, based on which we dissect key challenges, as well as possibilities for practically realizable system solutions across all layers of the Open Systems Interconnection stack. Since many of the 6G applications will need access to an order-of-magnitude more spectrum, utilization of frequencies between 100 GHz and 1 THz becomes of paramount importance. As such, the 6G eco-system will feature a diverse range of frequency bands, ranging from below 6 GHz up to 1 THz. We comprehensively characterize the limitations that must be overcome to realize working systems in these bands; and provide a unique perspective on the physical, as well as higher layer challenges relating to the design of next generation core networks, new modulation and coding methods, novel multiple access techniques, antenna arrays, wave propagation, radio-frequency transceiver design, as well as real-time signal processing. We rigorously discuss the fundamental changes required in the core networks of the future that serves as a major source of latency for time-sensitive applications. While evaluating the strengths and weaknesses of key 6G technologies, we differentiate what may be achievable over the next decade, relative to what is possible.