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INDONESIA
Indonesian Journal of Electrical Engineering and Computer Science
ISSN : 25024752     EISSN : 25024760     DOI : -
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Articles 102 Documents
Search results for , issue "Vol 12, No 1: January 2014" : 102 Documents clear
Analysis of Brownian Particles for finding the shortest path in networks Bin Hu; jia li xu; huan yan qian
Indonesian Journal of Electrical Engineering and Computer Science Vol 12, No 1: January 2014
Publisher : Institute of Advanced Engineering and Science

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Abstract

In this paper, we propose a method to analyze the shortest path finding between two nodes in complex networks. In this method, we first find that single Brownian particle follows the shortest path between source node and destination node in the probability of where denotes the shortest path steps between two nodes. To be compared with single particle utilization, then we specially analyze the multiple particles. We compute the probability of particles’ taking the shortest path between and when particles starts simultaneously from the source and head to the destination as . It’s very clear that there must be particles taking the shortest path to arrive at the destination in the multiple particles environment. And with the number of increasing, the arriving probability first arise and then drop down rapidly until to zero. In the end, we make the experiments and confirm our theoretical analysis. Our results would provide valuable usage for some applications such as finding the optimal routing in wireless sensor networks. DOI : http://dx.doi.org/10.11591/telkomnika.v12i1.3071
Power-Gating Scheme and Modeling of Near-Threshold Adiabatic Flip-Flops Fangfang Zang; Jianping Hu; Wei Cheng
Indonesian Journal of Electrical Engineering and Computer Science Vol 12, No 1: January 2014
Publisher : Institute of Advanced Engineering and Science

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Abstract

Technology scaling increases the density and performance of nanometer circuits, resulting in both large dynamic and leakage dissipations. This paper presents power-gating scheme, modeling, and optimization of adiabatic flip-flops operating on near-threshold regions to reduce both dynamic and leakage dissipations. The power-gated logic blocks are realized with complementary pass-transistor adiabatic logic with the dual threshold technique to reduce active leakage dissipations. The improved complementary pass-transistor adiabatic logic circuits are used as the two-phase power-gating switches to reduce the sleep leakage dissipations. The analytical model for power-gating adiabatic sequential circuits was constructed, and the energy overhead of the proposed power-gating scheme was analyzed in detail. Near-threshold computing for a power-gating adiabatic mode-10 counter was verified. The results show that the proposed power-gating technique is suitable for the adiabatic units operating on near-threshold regions. DOI : http://dx.doi.org/10.11591/telkomnika.v12i1.3378

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