论文标题
基于石墨烯的无线敏捷互连,用于大规模异质多芯片处理器
Graphene-based Wireless Agile Interconnects for Massive Heterogeneous Multi-chip Processors
论文作者
论文摘要
计算机体系结构中的主要设计原理最近从单片缩放驱动的方法转变为开发异质体系结构,这些架构紧密地整合了多个专业的处理器和内存芯片。在这样的渴望数据的多芯片体系结构中,当前包装中的网络(NIP)可能不足以满足其异质和快速变化的通信需求。该立场论文使无线内包纳米网络作为大规模异质处理器的高效且多功能的无线无线互连织物的推动者。为此,提出了在Terahertz频段中使用基于石墨烯的天线和具有独特频率梁重构性的收发器。从技术,通信和计算机架构的角度来分析了这种纳米网络愿景和对其实现的主要研究挑战的可行性。
The main design principles in computer architecture have recently shifted from a monolithic scaling-driven approach to the development of heterogeneous architectures that tightly co-integrate multiple specialized processor and memory chiplets. In such data-hungry multi-chip architectures, current Networks-in-Package (NiPs) may not be enough to cater to their heterogeneous and fast-changing communication demands. This position paper makes the case for wireless in-package nanonetworking as the enabler of efficient and versatile wired-wireless interconnect fabrics for massive heterogeneous processors. To that end, the use of graphene-based antennas and transceivers with unique frequency-beam reconfigurability in the terahertz band is proposed. The feasibility of such a nanonetworking vision and the main research challenges towards its realization are analyzed from the technological, communications, and computer architecture perspectives.