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On All-to-All Broadcast in Dense Gaussian Network On-Chip

机译:关于密集高斯网络片上的所有广播

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摘要

Gaussian networks are gaining popularity as good candidates Network On-Chip (NoC) for interconnecting Multiprocessor System-on-Chips (MPSoCs). They showed better topological properties compared to the 2D torus networks with the same number of nodes and the same degree 4. All-to-all broadcast is a collective communication algorithm used frequently in many parallel applications. Recently, Z. Zhang et al. have proposed an all-to-all broadcast algorithm for Gaussian on-chip networks that achieves the minimum delay time but requires 4 extra buffers per router, where is the network diameter. In this paper, we propose a new all-to-all broadcast algorithm for dense Gaussian on-chip networks that achieves the minimum delay time without requiring any extra buffers per router. In this paper, we propose a new all-to-all broadcast algorithm for dense Gaussian on-chip networks that achieves the minimum delay time without requiring any extra buffers per router. Along with low latency, reducing the amount of buffer space and power consumption are very important issues in NoCs architectures.
机译:高斯网络作为互连多处理器片上系统(MPSoC)的良好候选网络片上网络(NoC)越来越受欢迎。与具有相同节点数和相同度数4的2D圆环网络相比,它们显示出更好的拓扑特性。全播广播是一种在许多并行应用中经常使用的集体通信算法。最近,Z.Zhang等人。已经提出了一种用于高斯片上网络的全部广播算法,该算法可以实现最短的延迟时间,但是每个路由器需要4个额外的缓冲器,其中网络直径是。在本文中,我们为密集的高斯片上网络提出了一种新的“全部广播”算法,该算法可实现最短的延迟时间,而每个路由器无需任何额外的缓冲器。在本文中,我们为密集的高斯片上网络提出了一种新的“全部广播”算法,该算法可实现最短的延迟时间,而每个路由器无需任何额外的缓冲器。伴随着低延迟,减少缓冲区空间和功耗是NoC架构中非常重要的问题。

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