Combined TDM and SDM Circuit Switching NoCs with Dedicated Connection Allocator

Yong Chen, E. Matús, G. Fettweis
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Abstract

In general, circuit switching (CS) NoCs suffer from path diversity and resource utilization problem. Combining Time-Division Multiplexing (TDM) and Space-Division-Multiplexing (SDM) CS NoCs can reasonably mitigate this problem by increasing the path diversity and improving sharing of sub-channel among multiple connections. In order to investigate and optimize TDM-SDM partitioning strategy, in this paper, we propose a dedicated connection allocator for combined TDM-SDM CS NoCs based on trellis-search algorithm, which can explore all possible paths between source-destination node pairs within a guaranteed latency. In contrast to the recently published approaches, we propose the novel bidirectional search that starts at source node and destination node simultaneously. Compared to previous unidirectional trellis search algorithms, our algorithm halves the search time while keeping the allocator area almost the same. In addition to this, we studied the influence of different TDM-SDM link partitioning strategies on success rate and path length that allowed us to find the optimal solution. The simulation results show our approach can improve the success rate by 25% to 42% compared to previous connection allocation approaches.
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结合TDM和SDM电路交换noc的专用连接分配器
一般来说,电路交换网络存在路径分集和资源利用问题。将时分多路复用(TDM)和空分多路复用(SDM)相结合,可以通过增加路径分集和改善多连接间子信道的共享来合理地缓解这一问题。为了研究和优化TDM-SDM分区策略,本文提出了一种基于网格搜索算法的TDM-SDM CS - noc专用连接分配器,该分配器可以在保证延迟的情况下探索源-目的节点对之间的所有可能路径。与最近发表的方法相比,我们提出了同时从源节点和目标节点开始的新型双向搜索。与以前的单向网格搜索算法相比,我们的算法在保持分配器面积几乎相同的情况下将搜索时间减半。除此之外,我们还研究了不同的TDM-SDM链路划分策略对成功率和路径长度的影响,从而使我们能够找到最优解。仿真结果表明,与以往的连接分配方法相比,该方法的成功率提高了25% ~ 42%。
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