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Graphene-enabled wireless communication for massive multicore architectures

机译:面向大规模多核架构的支持石墨烯的无线通信

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Current trends in microprocessor architecture design are leading towards a dramatic increase of core-level parallelization, wherein a given number of independent processors or cores are interconnected. Since the main bottleneck is foreseen to migrate from computation to communication, efficient and scalable means of inter-core communication are crucial for guaranteeing steady performance improvements in many-core processors. As the number of cores grows, it remains unclear whether initial proposals, such as the Network-on-Chip (NoC) paradigm, will meet the stringent requirements of this scenario. This position paper presents a new research area where massive multicore architectures have wireless communication capabilities at the core level. This goal is feasible by using graphene-based planar antennas, which can radiate signals at the Terahertz band while utilizing lower chip area than its metallic counterparts. To the best of our knowledge, this is the first work that discusses the utilization of graphene-enabled wireless communication for massive multicore processors. Such wireless systems enable broadcasting, multicasting, all-to-all communication, as well as significantly reduce many of the issues present in massively multicore environments, such as data coherency, consistency, synchronization and communication problems. Several open research challenges are pointed out related to implementation, communications and multicore architectures, which pave the way for future research in this multidisciplinary area.
机译:微处理器体系结构设计的当前趋势正在导致内核级并行化的显着提高,其中给定数量的独立处理器或内核是互连的。由于预计主要瓶颈将从计算迁移到通信,因此高效而可扩展的内核间通信方式对于确保多核处理器的稳定性能改进至关重要。随着内核数量的增加,尚不清楚初始提议(例如片上网络(NoC)范式)是否可以满足此方案的严格要求。该立场文件提出了一个新的研究领域,大规模的多核体系结构在核心层具有无线通信功能。通过使用基于石墨烯的平面天线,该目标是可行的,该天线可以在太赫兹频段辐射信号,同时利用比其金属同类产品更低的芯片面积。据我们所知,这是讨论将石墨烯支持的无线通信用于大型多核处理器的第一项工作。这样的无线系统可以进行广播,多播,所有通信,并且可以大大减少大规模多核环境中存在的许多问题,例如数据一致性,一致性,同步性和通信问题。指出了与实现,通信和多核体系结构有关的几个开放研究挑战,这些挑战为该多学科领域的未来研究铺平了道路。

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