A Tale of Two Technology Disruptions

K. Bergman
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引用次数: 0

Abstract

With power dissipation severely limiting the frequency scaling of microprocessors, the emergence of chip multiprocessors (CMPs) had shifted computingto embrace highly parallel multicore architectures. Realizing performance in these newgenerations of chips is becoming increasingly dependent on how efficiently applications can exploit the growing number of parallel resources. Whereas computation power as measured in FLOPs was the key metric of past microprocessors, performance in today?s CMPs is dominated by data movement challenges. In this so-called ``communications bound?? era of computing, new technologies are sought that can deliver energy-efficient high-bandwidth interconnectivity. While optics is a natural communications technology with broad success in long-haul fiber optic telecommunications, integration at the chip scale, particularly with silicon, had been challenging.
两种技术颠覆的故事
由于功耗严重限制了微处理器的频率缩放,芯片多处理器(cmp)的出现将计算转向了高度并行的多核架构。实现这些新一代芯片的性能越来越依赖于应用程序如何有效地利用越来越多的并行资源。计算能力(以FLOPs衡量)是过去微处理器的关键指标,而今天的性能?cmp主要由数据移动挑战主导。在这个所谓的“通讯界”??在计算时代,人们寻求能够提供高能效、高带宽互联的新技术。虽然光学是一种天然的通信技术,在长途光纤通信中取得了广泛的成功,但在芯片规模上的集成,特别是与硅的集成,一直具有挑战性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEEE Design & Test of Computers
IEEE Design & Test of Computers 工程技术-工程:电子与电气
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