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4 Hardware Trojans in Microcircuits
161. DARPA, Trust in Integrated circuits (TIC) (Mar 2007), http://wwwdarpa.mil/MTO/solicitat
ions/baa07-24/index.html
162. A. Das, G. Memik, J. Zambreno, A. Choudhary, Detecting/preventing information leakage
on the memory bus due to malicious hardware, in Design, Automation & Test in Europe
Conference & Exhibition (DATE) (Mar. 2010), pp. 861–866, http://portal.acm.org/citation.
cfm?id=1871135
163. Defense Science Board, Department of Defense, U.S.A. High Performance Microchip supply.
http://www.cra.org/govaffairs/images/2005-02-HPMS_Report_Final.pdf
164. D. Du, S. Narasimhan, R. Chakraborty, S. Bhunia, Self-referencing: a scalable side-channel
approach for hardware Trojan detection, in Stefan Mangard and Fran cois-Xavier Standaert,
editors, Cryptographic Hardware and Embedded Systems, CHES 2010, volume 6225 of
Lecture Notes in Computer Science (Springer, Berlin, Heidelberg, 2010), pp. 173–187, http://
dx.doi.org/10.1007/978-3-642-15031-9_12
165. S. Jha, S.K. Jha, Randomization based probabilistic approach to detect Trojan circuits, in
High Assurance Systems Engineering Symposium, 2008. HASE 2008. 11th IEEE (2008),
pp. 117–124. https://doi.org/10.1109/hase.2008.37
166. Y. Jin, Y. Makris, Hardware Trojans in wireless cryptographic ICs. Des. Test Comput. IEEE
27(1), 26–35 (Jan. 2010). ISSN 0740-7475. https://doi.org/10.1109/mdt.2010.21
167. C.H. Kim, J.-J. Quisquater, Faults, injection methods and fault attacks. IEEE Des. Test
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168. L.-W. Kim, J.D. Villasenor, C.K. Koc, A Trojan-resistant system-on-chip bus architecture, in
Military Communications Conference, 2009. MILCOM 2009. IEEE (2009), pp. 1–6 https://
doi.org/10.1109/milcom.2009.5379966
169. S.T. King, J. Tucek, A. Cozzie, C. Grier, W Jiang, Y Zhou, Designing and implementing
malicious hardware, in LEET 2008: Proceedings of the 1st Usenix Workshop on Large-Scale
Exploits and Emergent Threats (USENIX Association, Berkeley, CA, USA, 2008), pp. 1–8,
http://portal.acm.org/citation.cfm?id=1387709.1387714
170. F. Koushanfar, A. Mirhoseini, A unifted framework for multimodal submodular integrated
circuits Trojan detection. 6 (1), 162–174 (2011), https://doi.org/10.1109/tifs.2010.2096811
171. F. Koushanfar, A. Mirhoseini, Y. Alkabani, A unifted submodular framework for multimodal
IC Trojan detection, in Information Hiding, volume 6387 of Lecture Notes in Computer
Science, ed. by R.B Ohme, P. Fong, R. Safavi-Naini (Springer, Berlin, Heidelberg, 2010),
pp. 17–32, http://dx.doi.org/10.1007/978-3-642- 16435-4_2
172. C. Lamech, R. Rad, M. Tehrani, J. Plusquellic, An experimental analysis of power and delay
signal-to-noise requirements for detecting trojans and methods for achieving the required
detection sensitivities. (99) (2011), https://doi.org/10.1109/tifs.2011.2136339. Early Access
173. J. Li, J. Lach, At-speed delay characterization for IC authentication and Trojan horse detection,
in Proceedings of the IEEE International Workshop on Hardware-Oriented Security and Trust,
2008 (HOST 2008) (2008), pp. 8–14, http://dx.doi.org/10.1109/HST.2008.4559038
174. L. Lin, M. Kasper, T. Gneysu, C. Paar, W Burleson, Trojan side-channels: lightweight hardware trojans through side-channel engineering, in Christophe Clavier and Kris Gaj, editors,
Cryptographic Hardware and Embedded Systems—CHES 2009, volume 5747 of Lecture Notes
in Computer Science (Springer, Berlin, Heidelberg, 2009), pp. 382–395, http://dx.doi.org/10.
1007/978-3-642-04138-9_27
175. D. Mclntyre, F. Wolff, C. Papachristou, S. Bhunia, D. Weyer, Dynamic evaluation of hardware
trust, in IEEE International Workshop on Hardware-Oriented Security and Trust, 2009. HOST
2009 (2009), pp. 108–111. https://doi.org/10.1109/hst.2009.5224990
176. S. Narasimhan, D. Du, R.S. Chakraborty, S. Paul, F. Wolff, C. Papachristou, K. Roy and S.
Bhunia. Multiple-parameter side-channel analysis: a non-invasive hardware Trojan detection
approach, in 2010 IEEE International Symposium on Hardware-Oriented Security and Trust
(HOST) (2010), pp. 13–18, https://doi.org/10.1109/hst.2010.5513122
177. M. Nelson, A. Nahapetian, F. Koushanfar, M. Potkonjak, SVD-based ghost circuitry detection, in Information Hiding, volume 5806 of Lecture Notes in Computer Science, ed. by S.
Katzenbeisser, A.-R. Sadeghi (Springer, Berlin, Heidelberg, 2009), pp. 221–234, http://dx.
doi.org/10.1007/978-3-642-04431-1_16
4 Hardware Trojans in Microcircuits
161. DARPA, Trust in Integrated circuits (TIC) (Mar 2007), http://wwwdarpa.mil/MTO/solicitat
ions/baa07-24/index.html
162. A. Das, G. Memik, J. Zambreno, A. Choudhary, Detecting/preventing information leakage
on the memory bus due to malicious hardware, in Design, Automation & Test in Europe
Conference & Exhibition (DATE) (Mar. 2010), pp. 861–866, http://portal.acm.org/citation.
cfm?id=1871135
163. Defense Science Board, Department of Defense, U.S.A. High Performance Microchip supply.
http://www.cra.org/govaffairs/images/2005-02-HPMS_Report_Final.pdf
164. D. Du, S. Narasimhan, R. Chakraborty, S. Bhunia, Self-referencing: a scalable side-channel
approach for hardware Trojan detection, in Stefan Mangard and Fran cois-Xavier Standaert,
editors, Cryptographic Hardware and Embedded Systems, CHES 2010, volume 6225 of
Lecture Notes in Computer Science (Springer, Berlin, Heidelberg, 2010), pp. 173–187, http://
dx.doi.org/10.1007/978-3-642-15031-9_12
165. S. Jha, S.K. Jha, Randomization based probabilistic approach to detect Trojan circuits, in
High Assurance Systems Engineering Symposium, 2008. HASE 2008. 11th IEEE (2008),
pp. 117–124. https://doi.org/10.1109/hase.2008.37
166. Y. Jin, Y. Makris, Hardware Trojans in wireless cryptographic ICs. Des. Test Comput. IEEE
27(1), 26–35 (Jan. 2010). ISSN 0740-7475. https://doi.org/10.1109/mdt.2010.21
167. C.H. Kim, J.-J. Quisquater, Faults, injection methods and fault attacks. IEEE Des. Test
Comput. 24(6), 544–545 (2007). https://doi.org/10.1109/mdt.2007.186
168. L.-W. Kim, J.D. Villasenor, C.K. Koc, A Trojan-resistant system-on-chip bus architecture, in
Military Communications Conference, 2009. MILCOM 2009. IEEE (2009), pp. 1–6 https://
doi.org/10.1109/milcom.2009.5379966
169. S.T. King, J. Tucek, A. Cozzie, C. Grier, W Jiang, Y Zhou, Designing and implementing
malicious hardware, in LEET 2008: Proceedings of the 1st Usenix Workshop on Large-Scale
Exploits and Emergent Threats (USENIX Association, Berkeley, CA, USA, 2008), pp. 1–8,
http://portal.acm.org/citation.cfm?id=1387709.1387714
170. F. Koushanfar, A. Mirhoseini, A unifted framework for multimodal submodular integrated
circuits Trojan detection. 6 (1), 162–174 (2011), https://doi.org/10.1109/tifs.2010.2096811
171. F. Koushanfar, A. Mirhoseini, Y. Alkabani, A unifted submodular framework for multimodal
IC Trojan detection, in Information Hiding, volume 6387 of Lecture Notes in Computer
Science, ed. by R.B Ohme, P. Fong, R. Safavi-Naini (Springer, Berlin, Heidelberg, 2010),
pp. 17–32, http://dx.doi.org/10.1007/978-3-642- 16435-4_2
172. C. Lamech, R. Rad, M. Tehrani, J. Plusquellic, An experimental analysis of power and delay
signal-to-noise requirements for detecting trojans and methods for achieving the required
detection sensitivities. (99) (2011), https://doi.org/10.1109/tifs.2011.2136339. Early Access
173. J. Li, J. Lach, At-speed delay characterization for IC authentication and Trojan horse detection,
in Proceedings of the IEEE International Workshop on Hardware-Oriented Security and Trust,
2008 (HOST 2008) (2008), pp. 8–14, http://dx.doi.org/10.1109/HST.2008.4559038
174. L. Lin, M. Kasper, T. Gneysu, C. Paar, W Burleson, Trojan side-channels: lightweight hardware trojans through side-channel engineering, in Christophe Clavier and Kris Gaj, editors,
Cryptographic Hardware and Embedded Systems—CHES 2009, volume 5747 of Lecture Notes
in Computer Science (Springer, Berlin, Heidelberg, 2009), pp. 382–395, http://dx.doi.org/10.
1007/978-3-642-04138-9_27
175. D. Mclntyre, F. Wolff, C. Papachristou, S. Bhunia, D. Weyer, Dynamic evaluation of hardware
trust, in IEEE International Workshop on Hardware-Oriented Security and Trust, 2009. HOST
2009 (2009), pp. 108–111. https://doi.org/10.1109/hst.2009.5224990
176. S. Narasimhan, D. Du, R.S. Chakraborty, S. Paul, F. Wolff, C. Papachristou, K. Roy and S.
Bhunia. Multiple-parameter side-channel analysis: a non-invasive hardware Trojan detection
approach, in 2010 IEEE International Symposium on Hardware-Oriented Security and Trust
(HOST) (2010), pp. 13–18, https://doi.org/10.1109/hst.2010.5513122
177. M. Nelson, A. Nahapetian, F. Koushanfar, M. Potkonjak, SVD-based ghost circuitry detection, in Information Hiding, volume 5806 of Lecture Notes in Computer Science, ed. by S.
Katzenbeisser, A.-R. Sadeghi (Springer, Berlin, Heidelberg, 2009), pp. 221–234, http://dx.
doi.org/10.1007/978-3-642-04431-1_16
