矩形完全差分网络拓扑下片上网络结构的能量性能

Mahendra Gaikwad
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引用次数: 0

摘要

片上网络架构是基于IP核的片上系统设计的一种新的范式转变,也被称为基于网络的通信子系统,它最近被视为一种提供高可扩展性,高计算和通信性能的创新方法。基于网络的通信子系统能耗已成为系统设计中的重要参数,需要进一步优化。随着IP核体系结构的发展,有必要在设计方法上提出新的思路,使基于网络的通信子系统的通信能量最小化。我们解决了基于网络的通信子系统的矩形完全差分网络拓扑,以较少的路由跳数和最多两跳的通信提供最佳的带宽利用率,以实现最佳的能源性能。本文利用完全差分集(PDS)的数学表示,提出了基于网络的通信子系统的矩形PDN拓扑结构,以实现通信能量的最小化。提出了弦环完全差分网络拓扑和矩形完全差分网络拓扑的低能耗解析模型。利用完全差分网络拓扑结果对基于网络的通信子系统分析模型进行了仿真,并对n=7阶的不同网络拓扑进行了验证。针对基于网络的通信子系统的矩形PDN拓扑结构,对链路能量模型和路由器能量模型进行了仿真验证。对于网络n=7的矩形PDN拓扑,对于阶为δ=2的{0,1,3}的完全差分集,数据通过路由器从一个IP传输到另一个IP的总体平均能耗;与2X2 CLICHÉ建筑的整体平均能耗相比
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Performance of Network on Chip Architecture for Rectangular Perfect Difference Network Topology
Network-on-chip architecture is a new paradigm shift for designing IP core based system on chip and also referred as network based communication subsystem which is recently looked as an innovative approach to provide a highly scalable, high computational and communication performance. Energy consumption of network based communication subsystems is becoming the valuable parameter in the design of system which further needs to be optimized. In the recent development of IP core architecture, it is necessary to propose new approach for design methodologies to minimize the communication energy for network based communication subsystems. We have addressed the Rectangular Perfect Difference Network topology for network based communication subsystems for providing optimum bandwidth utilization with lesser number of routing hops and at the most two hops in the communication to achieve the best energy performance. In this paper, we propose Rectangular PDN topology for network based communication subsystems for minimization of communication energy using the mathematical representation of Perfect Difference Set (PDS). We have proposed the analytical model with lower energy consumption for chordal Ring Perfect Difference Network Topology and Rectangular Perfect Difference Network Topology. The proposed analytical model for network based communication subsystems using Perfect Difference Network topology results is simulated and validated for different Network topology having order of n=7. The link energy model and router energy model are validated against simulation results for Rectangular PDN topology of network based communication subsystems. The overall average energy consumption for transfer of data through router from one IP to another IP for Rectangular PDN Topology for network n=7 for perfect difference set of {0, 1, 3} having order δ=2; is compared with overall average energy consumption for 2X2 CLICHÉ architecture
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