Citation: | Sergey N. Vecherin, Kiril D. Ratmanski, Luke Hogewood, Igor Linkov. Design of Resilient Sensor Networks Balancing Resilience and Efficiency[J]. International Journal of Disaster Risk Science, 2024, 15(1): 107-115. doi: 10.1007/s13753-024-00546-w |
[1] |
Akyildiz, I.F., W. Su, Y. Sankarasubramaniam, and E. Cayirci. 2002. Wireless sensor networks: A survey. Computer Networks 38(4): 393–422.
|
[2] |
Ali, S., T. Al Balushi, Z. Nadir, and O.K. Hussain. 2018. Improving the resilience of wireless sensor networks against security threats: A survey and open research issues. International Journal of Technology 9(4): Article 828.
|
[3] |
Burbano, L., L.F. Combita, N. Quijano, and S. Rueda. 2021. Dynamic data integration for resilience to sensor attacks in multi-agent systems. IEEE Access 9: 31236–31245.
|
[4] |
Bush, L.A., C.D. Carothers, and B.K. Szymanski. 2005. Algorithm for optimizing energy use and path resilience in sensor networks. In Proceedings of the Second European Workshop on Wireless Sensor Networks. Istanbul, Turkey: IEEE, 391–96.
|
[5] |
Del-Valle-Soto, C., C. Mex-Perera, R. Monroy, and J. Nolazco-Flores. 2015. On the routing protocol influence on the resilience of wireless sensor networks to jamming attacks. Sensors 15(4): 7619–7649.
|
[6] |
Dhillon, S.S., and K. Chakrabarty. 2003. Sensor placement for effective coverage and surveillance in distributed sensor networks. In 2003 IEEE Wireless Communications and Networking 3, 1609–1614. New Orleans, LA: IEEE.
|
[7] |
Ganesan, D., R. Govindan, S. Shenker, and D. Estrin. 2001. Highly resilient, energy-efficient multipath routing in wireless sensor networks. ACM SIGMOBILE Mobile Computing and Communications Review 5(4): 11–25.
|
[8] |
Guidoni, D.L., R.A.F. Mini, and A.A.F. Loureiro. 2010. On the design of resilient heterogeneous wireless sensor networks based on small world concepts. Computer Networks 54(8): 1266–1281.
|
[9] |
Gupta, G., and M. Younis. 2003. Fault-tolerant clustering of wireless sensor networks. In Proceedings of 2003 IEEE Wireless Communications and Networking, 16–20 March 2003, New Orleans, LA, USA, 1579–1584.
|
[10] |
Hollnagel, E., D. Woods, and N. Leveson, eds. 2006. In Resilience engineering: Concepts and precepts. Hampshire, UK: Ashgate Publishing Ltd.
|
[11] |
Huang, R., L. Ma, G. Zhai, J. He, X. Chu, and H. Yan. 2020. Resilient routing mechanism for wireless sensor networks with deep learning link reliability prediction. IEEE Access 8: 64857–64872.
|
[12] |
Lee, S., and M. Younis. 2010. Recovery from multiple simultaneous failures in wireless sensor networks using minimum Steiner tree. Journal of Parallel and Distributed Computing 70(5): 525–536.
|
[13] |
Li, X., and Y. Ouyang. 2012. Reliable traffic sensor deployment under probabilistic disruptions and generalized surveillance effectiveness measures. Operations Research 60(5): 1183–1198.
|
[14] |
Linkov, I., D.A. Eisenberg, M.E. Bates, D. Chang, M. Convertino, J.H. Allen, S.E. Flynn, and T.P. Seager. 2013. Measurable resilience for actionable policy. Environmental Science & Technology 47(18): 10108–10110.
|
[15] |
Linkov, I., and B.D. Trump. 2019. The science and practice of resilience. Cham, Switzerland: Springer Nature Switzerland AG.
|
[16] |
Linkov, I., B.D. Trump, M. Golan, and J.M. Keisler. 2021. Enhancing resilience in post-COVID societies: By design or by intervention?. Environmental Science & Technology 55(8): 4202–4204.
|
[17] |
National Academies Committee on Increasing National Resilience to Hazards and Disasters, Committee on Science, Engineering, and Public Policy, and Policy and Global Affairs. 2012. Disaster resilience: A national imperative. Washington, DC: National Academies Press.
|
[18] |
Nikolopoulos, D., and C. Makropoulos. 2023. A novel cyber-physical resilience-based strategy for water quality sensor placement in water distribution networks. Urban Water Journal 20(3): 278–297.
|
[19] |
Panasonic Corp. 2023. Grid-eye thermopile array solutions. Panasonic Industrial Devices Sales Company of America. https://api.pim.na.industrial.panasonic.com/file_stream/main/fileversion/4112. Accessed 4 Aug 2023.
|
[20] |
Patriarca, R., J. Bergström, G.D. Gravio, and F. Costantino. 2018. Resilience engineering: Current status of the research and future challenges. Safety Science 102: 79–100.
|
[21] |
Ratmanski, K., and S. Vecherin. 2022. Resilience in distributed sensor networks. In Infrared imaging systems: Design, analysis, modeling, and testing XXXIII, ed. G.C. Holst, and D.P. Haefner, 31. Orlando, USA: SPIE.
|
[22] |
Song, H., S. Zhu, and G. Cao. 2007. Attack-resilient time synchronization for wireless sensor networks. Ad Hoc Networks 5(1): 112–125.
|
[23] |
Ueyama, J., H. Freitas, B.S. Faical, G.P.R. Filho, P. Fini, G. Pessin, P.H. Gomes, and L.A. Villas. 2014. Exploiting the use of unmanned aerial vehicles to provide resilience in wireless sensor networks. IEEE Communications Magazine 52(12): 81–87.
|
[24] |
Vecherin, S.N., D.K. Wilson, and C.L. Pettit. 2011. Optimal sensor placement with signal propagation effects and inhomogeneous coverage preferences. International Journal of Sensor Networks 9(2): Article 107.
|
[25] |
Vecherin, S.N., D.K. Wilson, and C.L. Pettit. 2017. Optimisation of numbers, types, and locations of wireless sensors with communication, finite supply, and multiple-sensor coverage constraints. International Journal of Sensor Networks 23(4): Article 222.
|
[26] |
Woods, D.D. 2015. Four concepts for resilience and the implications for the future of resilience engineering. Reliability Engineering & System Safety 141(9): 5–9.
|
[27] |
Xing, L. 2021. Cascading failures in Internet of Things: Review and perspectives on reliability and resilience. IEEE Internet of Things Journal 8(1): 44–64.
|
[28] |
Yang, H., F. Ye, Y. Yuan, S. Lu, and W. Arbaugh. 2005. Toward resilient security in wireless sensor networks. In Proceedings of the 6th ACM International Symposium on Mobile Ad Hoc Networking and Computing. Urbana-Champaign, IL, USA: ACM, 34–45.
|
[29] |
Yoo, M., T. Kim, J.T. Yoon, Y. Kim, S. Kim, and B.D. Youn. 2020. A resilience measure formulation that considers sensor faults. Reliability Engineering & System Safety 199(7): Article 106393.
|
[30] |
Zhang, Q., F. Zheng, Z. Kapelan, D. Savic, G. He, and Y. Ma. 2020. Assessing the global resilience of water quality sensor placement strategies within water distribution systems. Water Research 172(4): Article 115527.
|
[31] |
Zhao, J. 2016. On resilience and connectivity of secure wireless sensor networks under node capture attacks. IEEE Transactions on Information Forensics and Security 12(3): 557–571.
|