Energy-efficient and security-optimized AES hardware design for ubiquitous computing

被引:0
|
作者
Chen Yicheng
机构
关键词
encryption and decryption; power analysis model; inhomogeneous S-Boxes; ubiquitous computing; advanced encryption standard;
D O I
暂无
中图分类号
TP212.9 [传感器的应用]; TN929.5 [移动通信];
学科分类号
080202 ; 080402 ; 080904 ; 0810 ; 081001 ;
摘要
Ubiquitous computing must incorporate a certain level of security.For the severely resource con-strained applications,the energy-efficient and small size cryptography algorithm implementation is a critical prob-lem.Hardware implementations of the advanced encryption standard (AES) for authentication and encryption are presented.An energy consumption variable is derived to evaluate low-power design strategies for battery-powered devices.It proves that compact AES architectures fail to optimize the AES hardware energy,whereas reducing invalid switching activities and implementing power-optimized sub-modules are the reasonable methods.Implemen-tations of different substitution box (S-Boxes) structures are presented with 0.25 μm 1.8 V CMOS (complementary metal oxide semiconductor) standard cell library.The comparisons and trade-offs among area,security,and power are explored.The experimental results show that Galois field composite S-Boxes have smaller size and highest security but consume considerably more power,whereas decoder-switch-encoder S-Boxes have the best power char-acteristics with disadvantages in terms of size and security.The combination of these two type S-Boxes instead of homogeneous S-Boxes in AES circuit will lead to optimal schemes.The technique of latch-dividing data path is analyzed,and the quantitative simulation results demonstrate that this approach diminishes the glitches effectively at a very low hardware cost.
引用
收藏
页码:652 / 658
页数:7
相关论文
共 50 条
  • [21] Energy-efficient quantum computing
    Ikonen, Joni
    Salmilehto, Juha
    Mottonen, Mikko
    NPJ QUANTUM INFORMATION, 2017, 3
  • [22] Toward Energy-Efficient Computing
    Brown, David J.
    Reams, Charles
    COMMUNICATIONS OF THE ACM, 2010, 53 (03) : 50 - 58
  • [23] Energy-efficient quantum computing
    Joni Ikonen
    Juha Salmilehto
    Mikko Möttönen
    npj Quantum Information, 3
  • [24] Soft Computing Approaches in the design of energy-efficient wireless systems
    Gil-Lopez, S.
    Salcedo-Sanz, S.
    Del Ser, J.
    APPLIED SOFT COMPUTING, 2012, 12 (07) : 1829 - 1831
  • [25] Design Approaches for Energy-Efficient Optical Interconnects in Computing Platforms
    Liboiron-Ladouceur, Odile
    2010 23RD ANNUAL MEETING OF THE IEEE PHOTONICS SOCIETY, 2010, : 555 - 555
  • [26] Energy-Efficient Hardware Data Prefetching
    Guo, Yao
    Narayanan, Pritish
    Bennaser, Mahmoud Abdullah
    Chheda, Saurabh
    Moritz, Csaba Andras
    IEEE TRANSACTIONS ON VERY LARGE SCALE INTEGRATION (VLSI) SYSTEMS, 2011, 19 (02) : 250 - 263
  • [27] An energy-efficient framework for ubiquitous phone access
    Li, Yantao
    Zhou, Gang
    Leong, Daniel
    INTERNATIONAL JOURNAL OF COMMUNICATION SYSTEMS, 2016, 29 (12) : 1896 - 1906
  • [28] Energy-efficient network memory for ubiquitous devices
    Fryman, JB
    Huneycutt, CM
    Lee, HH
    Mackenzie, KM
    Schimmel, DE
    IEEE MICRO, 2003, 23 (05) : 60 - 70
  • [29] Energy-efficient Hardware Design for Spiking Neural Networks (Extended Abstract)
    Moitra, Abhishek
    Yin, Ruokai
    Panda, Priyadarshini
    FIFTY-SEVENTH ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS & COMPUTERS, IEEECONF, 2023, : 543 - 544
  • [30] Hardware Design of an Energy-Efficient High-Throughput Median Filter
    Lin, Shih-Hsiang
    Chen, Pei-Yin
    Lin, Chang-Hsing
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2018, 65 (11) : 1728 - 1732