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High-Performance and Fault-Tolerant 3D NoC-Bus Hybrid Architecture Using ARB-NET-Based Adaptive Monitoring Platform

机译:使用基于ARB-NET的自适应监控平台的高性能和容错3D NoC-Bus混合架构

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The emerging three-dimensional integrated circuits (3D-ICs) achieve greater device integration and enhanced system performance at lower cost and reduced area footprint, thereby offering higher order of connectivity and greater design choices and possibilities. To exploit the intrinsic capability of reduced communication distances in 3D-ICs, three-dimensional NoC-bus hybrid mesh architecture was proposed. Besides its various advantages in terms of area, power consumption, and performance, this architecture has a unique and hitherto previously unexplored possibility to implement an efficient system-wide monitoring network. In this paper, an efficient three-dimensional NoC architecture is proposed which is optimized for system performance, power consumption, and reliability. The mechanism benefits from a congestion-aware and bus failure-tolerant routing algorithm called AdaptiveZ for vertical communication. In addition, we have integrated a low-cost monitoring platform on top of the three-dimensional NoC-Bus Hybrid mesh architecture that can be efficiently used for various system management purposes such as traffic monitoring, fault tolerance, and thermal management. The proposed generic monitoring platform called ARB-NET utilizes bus arbiters to exchange the monitoring information directly with each other without using the data network. As a test case, based on the proposed monitoring platform, a fully congestion-aware and interlayer fault-tolerant routing algorithm named AdaptiveXYZ is presented taking advantage of information generated within bus arbiters. Compared to recently proposed stacked mesh three-dimensional NoCs, our extensive simulations with synthetic and real benchmarks reveal that our architecture using the AdaptiveXYZ routing can help in achieving significant power, performance, and reliability improvements with a negligible hardware overhead.
机译:新兴的三维集成电路(3D-IC)以更低的成本和更少的占地面积实现了更大的设备集成度和增强的系统性能,从而提供了更高级别的连接性以及更多的设计选择和可能性。为了利用3D-IC中减少通信距离的内在能力,提出了三维NoC总线混合网格体系结构。除了在面积,功耗和性能方面的各种优势外,该体系结构还具有独特的,迄今尚未探索的实现高效的全系统监控网络的可能性。本文提出了一种有效的三维NoC架构,该架构针对系统性能,功耗和可靠性进行了优化。该机制得益于用于垂直通信的拥塞感知和总线容错路由算法AdaptiveZ。此外,我们在三维NoC-Bus混合网格架构的基础上集成了一个低成本的监控平台,该平台可有效地用于各种系统管理目的,例如流量监控,容错和热管理。提议的称为ARB-NET的通用监视平台利用总线仲裁器直接相互交换监视信息,而无需使用数据网络。作为一个测试案例,基于所提出的监视平台,提出了一种充分拥塞的感知层间容错路由算法AdaptiveXYZ,它利用了总线仲裁器中生成的信息。与最近提出的堆叠网状三维NoC相比,我们的综合模拟和真实基准测试表明,使用AdaptiveXYZ路由的体系结构可以帮助实现显着的电源,性能和可靠性改进,而硬件开销却可以忽略不计。

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