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FTTDOR: Microring Fault-resilient Optical Router for Reliable Optical Network-on-Chip Systems

机译:FTTDOR:用于可靠的片上光网络系统的微环故障恢复光路由器

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Photonic Networks-on-Chip (PNoCs) have been proposed as a disruptive technology solution to the silicon problem showing their great superiority over their electronic counterparts. In these architectures, higher bandwidth can be achieved thanks to the light speed transmissions, and the power required to transmit over a distance is much lower. Despite these advantages, PNoC designs are very complex, and thus are more susceptible to physical defects and short-term malfunctions. Therefore, fault-tolerance has become a primordial requirement for these future generation high-performance systems. In this paper, we present a fault-tolerant optical router, named FTTDOR, with its electrical control module for highly reliable low-power 3D-Networks-on-Chip (PHENIC). It uses minimal redundancy to assure accuracy of the packet transmission even after faulty Microring Resonators (MRs) are detected. The fault-tolerant optical switch is decomposed nonblocking, with minimal MRs, and requires no MRs for straight transmission (East to West, North to South, and Up to Down, as well as their inverses). Simulation results show that the network can maintain 98% and 94% throughput when considering 3% and 20% fault-rates, respectively. These results come with 35% decrease in the number of MRs when compared to the conventional crossbar switch resulting in 32% power reduction.
机译:已经提出了片上光子网络(PNoC)作为硅问题的破坏性技术解决方案,显示出它们比电子同类产品具有更大的优越性。在这些架构中,由于光速传输,可以实现更高的带宽,并且远距离传输所需的功率要低得多。尽管具有这些优点,但PNoC设计非常复杂,因此更容易受到物理缺陷和短期故障的影响。因此,容错已成为这些下一代高性能系统的基本要求。在本文中,我们介绍了一种名为FTTDOR的容错光路由器,其电气控制模块用于高度可靠的低功耗3D片上网络(PHENIC)。即使在检测到故障的微环谐振器(MR)之后,它也使用最小的冗余来确保数据包传输的准确性。容错光开关可无阻塞地分解,具有最小的MR,并且不需要MR即可直接传输(从东到西,从北到南,从上到下,以及它们的倒数)。仿真结果表明,当分别考虑3%和20%的故障率时,网络可以保持98%和94%的吞吐量。与传统的纵横开关相比,这些结果使MR的数量减少了35%,从而使功耗降低了32%。

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