• DocumentCode
    3056737
  • Title

    Multiple-parameter side-channel analysis: A non-invasive hardware Trojan detection approach

  • Author

    Narasimhan, Seetharam ; Du, Dongdong ; Chakraborty, Rajat Subhra ; Paul, Somnath ; Wolff, Francis ; Papachristou, Christos ; Roy, Kaushik ; Bhunia, Swarup

  • Author_Institution
    Case Western Reserve Univ., Cleveland, OH, USA
  • fYear
    2010
  • fDate
    13-14 June 2010
  • Firstpage
    13
  • Lastpage
    18
  • Abstract
    Malicious alterations of integrated circuits during fabrication in untrusted foundries pose major concern in terms of their reliable and trusted field operation. It is extremely difficult to discover such alterations, also referred to as “hardware Trojans” using conventional structural or functional testing strategies. In this paper, we propose a novel non-invasive, multiple-parameter side-channel analysis based Trojan detection approach that is capable of detecting malicious hardware modifications in the presence of large process variation induced noise. We exploit the intrinsic relationship between dynamic current (IDDT ) and maximum operating frequency (Fmax) of a circuit to distinguish the effect of a Trojan from process induced fluctuations in IDDT . We propose a vector generation approach for IDDT measurement that can improve the Trojan detection sensitivity for arbitrary Trojan instances. Simulation results with two large circuits, a 32-bit integer execution unit (IEU) and a 128-bit Advanced Encryption System (AES) cipher, show a detection resolution of 0.04% can be achieved in presence of ±20% parameter (Vth) variations. The approach is also validated with experimental results using 120nm FPGA (Xilinx Virtex-II) chips.
  • Keywords
    cryptography; field programmable gate arrays; invasive software; 128 bit advanced encryption system cipher; 32 bit integer execution unit; FPGA chips; Xilinx Virtex-II; dynamic current; functional testing strategies; integrated circuits; maximum operating frequency; multiple parameter side channel analysis; noninvasive hardware trojan detection; process variation induced noise; untrusted foundries; Circuit noise; Circuit simulation; Circuit testing; Cryptography; Fabrication; Fluctuations; Foundries; Frequency; Hardware; Integrated circuit reliability; Hardware Trojan; Multiple-parameter test; Side channel analysis;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Hardware-Oriented Security and Trust (HOST), 2010 IEEE International Symposium on
  • Conference_Location
    Anaheim, CA
  • Print_ISBN
    978-1-4244-7811-8
  • Type

    conf

  • DOI
    10.1109/HST.2010.5513122
  • Filename
    5513122