论文标题
部分可观测时空混沌系统的无模型预测
Effective Communications for 6G: Challenges and Opportunities
论文作者
论文摘要
本文研究了有效的沟通,这是Weaver和Shannon确定的三种形式之一,是即将到来的6G用例的推动者。设想的触觉,全息和多感官通信需要每秒terabits的带宽,并按照微秒的顺序进行延迟,以获得沉浸式体验。我们认为,对于支持最终用户目标量身定制的信息的理论框架对于支持此类应用是必要的。不同于最近出现的讨论,重点是交换消息的含义,我们专注于使用这些消息以所需的方式采取行动。我们强调了分布式知识积累的基本特征,作为这一即将到来的范式的促进者,并讨论使有效的沟通成为现实的挑战,以及解决这些挑战的未来研究的潜在机会。在现实生活中,我们展示了由于转移的累积知识而转移的位数的潜在减少。
This article studies effective communication, one of the three forms identified by Weaver and Shannon, as an enabler for the upcoming 6G use cases. The envisioned tactile, holographic, and multi-sensory communications require bandwidths in the order of terabits per second and latencies in the order of microseconds for an immersive experience. We argue that a theoretical framework for transporting information tailored to end-users' goals is necessary to support such applications. Different from the recently emerging discussions focusing on the meaning of exchanged messages, we focus on using these messages to take actions in the desired way. We highlight the essential characteristics of distributed knowledge accumulation as a facilitator for this upcoming paradigm, and discuss the challenges of making effective communications a reality and the potential opportunities for future research to address these challenges. In a real-life use case, we showcase the potential reduction in the number of bits transferred owing to the transferred accumulated knowledge.