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Leveraging Optical Technology in Future Bus-based Chip Multiprocessors

机译:在未来基于总线的芯片多处理器中利用光学技术

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摘要

Although silicon optical technology is still in its formative stages, and the more near-term application is chip-to-chip communication, rapid advances have been made in the development of on-chip optical interconnects. In this paper, we investigate the integration of CMOS-compatible optical technology to on-chip cache-coherent buses in future CMPs. While not exhaustive, our investigation yields a hierarchical opto-electrical system that exploits the advantages of optical technology while abiding by projected limitations. Our evaluation shows that, for the applications considered, compared to an aggressive all-electrical bus of similar power and area, significant performance improvements can be achieved using an opto-electrical bus. This performance improvement is largely dependent on the application's bandwidth demand and on the number of implemented wavelengths per optical waveguide. We also present a number of critical areas for future work that we discover in the course of our research.
机译:尽管硅光学技术仍处于发展阶段,更近期的应用是芯片间通信,但片上光学互连的开发已取得了迅速的进步。在本文中,我们研究了在将来的CMP中将CMOS兼容光学技术集成到片上缓存相干总线上的方法。尽管不详尽,但我们的研究产生了一种分层的光电系统,该系统在遵守预期限制的同时,充分利用了光学技术的优势。我们的评估表明,对于所考虑的应用,与功率和面积相似的主动型全电气总线相比,使用光电总线可以显着提高性能。性能的提高很大程度上取决于应用程序的带宽需求以及每个光波导实现的波长数量。我们还介绍了我们在研究过程中发现的一些未来工作的关键领域。

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