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首页> 外文期刊>The journal of China Universities of Posts and Telecommunications >Low-power clock-less hardware implementation of the rijndael S-box for wireless sensor networks
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Low-power clock-less hardware implementation of the rijndael S-box for wireless sensor networks

机译:Rijndael S-box用于无线传感器网络的低功耗无时钟硬件实现

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摘要

The recent development of microelectronics techniques and advances in wireless communications have made it feasible to design low-cost, low-power, multifunctional and intelligent sensor nodes for wireless sensor networks (WSN). The design challenges for an efficient WSN mainly lie in two issues: power and security. The Rijindael algorithm is a candidate algorithm for encrypting data in WSN. The SubByte (S-box) transformation is the main building block of the Rijindael algorithm. It dominates the hardware complexity and power consumption of the Rijindael cryptographic engine. This article proposes a clock-less hardware implementation of the S-box. In this S-box, 1) The composite field arithmetic in GF((2~4))~2 was used to implement the compact datapath circuit; 2) A high-efficiency latch controller was attained by utilizing the four-phase micropipeline. The presented hardware circuit is an application specific integrated circuit (ASIC) on 0.25 μm complementary mental oxide semiconductor (CMOS) process using three metal layers. The layout simulation results show that the proposed S-box offers low-power consumption and high speed with moderate area penalty. This study also proves that the clock-less design methodology can implement high-performance cryptographic intellectual property (IP) core for the wireless sensor node chips.
机译:微电子技术的最新发展和无线通信的进步使得设计用于无线传感器网络(WSN)的低成本,低功耗,多功能和智能传感器节点变得可行。高效的WSN的设计挑战主要在于两个问题:功率和安全性。 Rijindael算法是用于在WSN中加密数据的候选算法。 SubByte(S-box)转换是Rijindael算法的主要构建块。它控制了Rijindael加密引擎的硬件复杂性和功耗。本文提出了一种无时钟的S-box硬件实现。在这个S盒中,1)使用GF((2〜4))〜2的复合场算法实现紧凑的数据路径电路; 2)利用四相微管线获得了高效锁存控制器。提出的硬件电路是使用三个金属层的基于0.25μm互补金属氧化物半导体(CMOS)工艺的专用集成电路(ASIC)。布局仿真结果表明,所提出的S-box具有较低的功耗和较高的速度,且面积损失适中。这项研究还证明,无时钟设计方法可以为无线传感器节点芯片实现高性能的加密知识产权(IP)内核。

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