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首页> 外文期刊>Journal of Low Power Electronics >Exploring a Low-Cost and Power-Efficient Hybridization Technique for 3D NoC-Bus Hybrid Architecture Using LastZ-Based Routing Algorithms
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Exploring a Low-Cost and Power-Efficient Hybridization Technique for 3D NoC-Bus Hybrid Architecture Using LastZ-Based Routing Algorithms

机译:使用基于LastZ的路由算法探索3D NoC-Bus混合体系结构的低成本,高能效混合技术

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摘要

Three-dimensional (3D) integration in which multiple active silicon layers are stacked above each other and vertically interconnected offers shorter interconnection wire for Networks-on-Chip (NoC). The simple 3D NoC architectures such as Symmetric 3D Mesh NoC could not exploit the beneficial feature of a negligible inter-layer distance in 3D chips. In order to exploit the intrinsic capability of reducing the wire length in 3D ICs, 3D NoC-Bus Hybrid architecture was proposed. This architecture suffers from naive and straightforward hybridization between NoC and bus media. In this paper, an efficient hybridization scheme is presented to enhance system performance, power consumption, and area of 3D NoC-Bus Hybrid architectures. The hybridization mechanism benefiting from a rule called LastZ enables low-cost inter-layer communication architecture. In the proposed architecture, instead of using the conventional 6×6 routers, 5×6 routers were utilized which offers many advantages. To estimate the efficiency of the proposed architecture, the system has been simulated using synthetic (uniform, hotspot 10%, and Negative Exponential Distribution) traffic patterns as well as real benchmarks, including the one with an integrated videoconference application. Compared to a conventional 3D NoC-Bus Hybrid Mesh architecture, our extensive simulations reveal significant area, power, and performance improvements for the proposed LastZ-based hybridization scheme.
机译:多个有源硅层相互堆叠并垂直互连的三维(3D)集成为片上网络(NoC)提供了更短的互连线。简单的3D NoC架构(例如对称3D Mesh NoC)无法利用3D芯片中可忽略的层间距离这一有益功能。为了利用减少3D IC中导线长度的内在能力,提出了3D NoC-Bus混合架构。这种架构遭受NoC和总线媒体之间幼稚而直接的混合。在本文中,提出了一种有效的混合方案来增强系统性能,功耗和3D NoC-Bus混合体系结构的面积。受益于称为LastZ的规则的混合机制可实现低成本的层间通信体系结构。在提出的体系结构中,代替使用常规的6×6路由器,使用了5×6路由器,它具有许多优点。为了评估所提出的体系结构的效率,已使用合成(均匀,热点10%和负指数分布)流量模式以及实际基准(包括具有集成视频会议应用程序的基准)对系统进行了仿真。与传统的3D NoC-Bus混合网格架构相比,我们广泛的仿真显示了基于拟议的基于LastZ的混合方案的显着面积,功耗和性能方面的改进。

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