教程T8A:设计多核系统的硅光子通信网络

A. Joshi
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引用次数: 0

摘要

只提供摘要形式。本教程的目的是解释在多核系统中使用硅光子链路技术进行芯片间和芯片内通信的限制和机会。硅光子链路比等效电链路具有更大的带宽密度和更低的能量。在本教程中,我将首先提供硅光子器件技术和链路收发器/调谐电路的概述。通过三个硅光子网络案例研究{片上块到块网络,进程到DRAM网络和DRAM存储器通道,将详细解释物理层,微架构层和架构层的各种硅光子网络设计问题。我们还将介绍一个迭代设计过程,在这三个层次之间移动以满足硅光子技术约束下的功率性能规格。在本教程结束时,与会者将对硅光子技术的能力有一个广泛的了解,他们将能够设计和分析多核系统的硅光子网络。
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Tutorial T8A: Designing Silicon-Photonic Communication Networks for Manycore Systems
Summary form only given. The goal of this tutorial is to explain the limits and opportunities of using silicon-photonic link technology for inter-chip and intra-chip communication in manycore systems. Silicon-photonic links have larger bandwidth density and lower energy than equivalent electrical links. In this tutorial, I will first provide an overview of the silicon-photonic device technology and link transceiver/tuning circuits. Using three silicon-photonic network case studies {on-chip tile-to-tile network, process-to-DRAM network and DRAM memory channel, the various silicon-photonic network design issues at the physical level, micro-architecture level and architecture level will be explained in detail. An iterative design process, where we move between these three levels to meet the power-performance specifications under the silicon-photonic technology constraints will also be presented. At the end of the tutorial, attendees will have a broad understanding of the capabilities of silicon-photonic technology, and they will be able to design and analyze silicon-photonic networks for Manycore systems.
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