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PSION 2: Optimizing Physical Layout of Wavelength-Routed ONoCs for Laser Power Reduction

机译:第2部分:优化波长路由ONoC的物理布局以降低激光功率

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Optical Networks-on-Chip (ONoCs) are becoming increasingly attractive for intra-chip communications due to their low power-per-bit requirements and high bandwidth. Wavelength-Routed ONoCs (WRONoCs), a subtype of ONoCs, further reduce network latency. Recently, tools to design WRONoCs have been developed, but these tools are still incomplete as they do not yet consider key design aspects such as the type of laser source used and the impact of the laser Power Distribution Network (PDN) on the laser power consumption. In this work we propose the first design automation tool to combine awareness of both on-chip and off-chip lasers with optimization of both the logical topology and the physical layout of WRONoCs for application-specific designs. Compared to previous works, the incorporation of the type of laser and the PDN into the optimization process combined with a new Generic Routing Unit (GRU) placement method leads to a laser power reduction of up to 20%.
机译:由于片上光网络(ONoC)的低每位功率要求和高带宽,它们对于芯片内通信变得越来越有吸引力。波长路由ONoC(WRONoC)是ONoC的子类型,它进一步减少了网络延迟。最近,已经开发出用于设计WRONoC的工具,但是这些工具仍然不完整,因为它们尚未考虑关键的设计方面,例如所使用的激光源的类型以及激光配电网(PDN)对激光功耗的影响。 。在这项工作中,我们提出了第一个设计自动化工具,它将针对片上和片外激光器的认知与针对特定应用设计的WRONoC的逻辑拓扑和物理布局的优化相结合。与以前的工作相比,将激光器类型和PDN纳入优化过程与新的通用路由单元(GRU)放置方法相结合,可将激光功率降低多达20%。

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