Enhancing Integrity of Modbus TCP Through Covert Channels

被引:0
|
作者
Taylor, James M., Jr. [1 ]
Sharif, Hamid R. [2 ]
机构
[1] Univ Nebrsaka, Natl Strateg Res Inst, Omaha, NE 68198 USA
[2] Univ Nebraska Lincoln, Elect & Comp Engn Dept, Omaha, NE 68182 USA
关键词
cyber-physical systems; industrial control systems; operational technology; information security; cyber-physical adversary; information assurance; denial of service; Modbus; man-in-the-middle attack; integrity; covert communications channel;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
CPS-enabled systems form the underlying support infrastructure that impact the efficient delivery of critical goods and services in our modern society. Failure to adequately protect the integrity, confidentiality, and availability of our critical infrastructure systems, like transportation, delivery of energy and water, and healthcare, could introduce vulnerabilities that could be exploited by attackers. CPS networks originated from a number of proprietary protocols, built to operate without connections that extended beyond the plant walls. This "security through obscurity" approach did not reveal widespread security risks until these systems were interconnected with other information technology systems, including vulnerable business operations networks. The characteristics of the communications protocols used in operational technology systems, like Modbus, present a number of barriers to adopting security enhancements. When these systems are exploited, which can be easily demonstrated on a Modbus system, the impact of security failures can be severe. Covert channels have the potential to create an out-of-band communication path that would enable some level of integrity checking between devices. The Modbus Covert Channel Integrity Check is a proposed concept that would demonstrate the use of covert channels as a method of secure communication that would prevent a number of attacks, including man-in-the-middle.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Embedding covert channels into TCP/IP
    Murdoch, SJ
    Lewis, S
    INFORMATION HIDING, 2005, 3727 : 247 - 261
  • [2] Detection of Covert Channels in TCP Retransmissions
    Zillien, Sebastian
    Wendzel, Steffen
    SECURE IT SYSTEMS, 2018, 11252 : 203 - 218
  • [3] TCP Covert Timing Channels: Design and Detection
    Luo, Xiapu
    Chan, Edmond W. W.
    Chang, Rocky K. C.
    2008 IEEE INTERNATIONAL CONFERENCE ON DEPENDABLE SYSTEMS & NETWORKS WITH FTCS & DCC, 2008, : 420 - 429
  • [4] Covert messaging through TCP timestamps
    Giffin, J
    Greenstadt, R
    Litwack, P
    Tibbetts, R
    PRIVACY ENHANCING TECHNOLOGIES, 2003, 2482 : 194 - 208
  • [5] A TCP-based Covert Channel with Integrity Check and Retransmission
    Bistarelli, Stefano
    Imparato, Andrea
    Santini, Francesco
    2023 20TH ANNUAL INTERNATIONAL CONFERENCE ON PRIVACY, SECURITY AND TRUST, PST, 2023, : 62 - 68
  • [6] A TCP-based covert channel with integrity check and retransmission
    Bistarelli, Stefano
    Imparato, Andrea
    Santini, Francesco
    INTERNATIONAL JOURNAL OF INFORMATION SECURITY, 2024, 23 (06) : 3481 - 3512
  • [7] A Network Steganography Lab on Detecting TCP/IP Covert Channels
    Zseby, Tanja
    Vazquez, Felix Iglesias
    Bernhardt, Valentin
    Frkat, Davor
    Annessi, Robert
    IEEE TRANSACTIONS ON EDUCATION, 2016, 59 (03) : 224 - 232
  • [8] Network based detection of passive covert channels in TCP/IP
    Tumoian, E
    Anikeev, M
    LCN 2005: 30TH CONFERENCE ON LOCAL COMPUTER NETWORKS, PROCEEDINGS, 2005, : 802 - 807
  • [9] ENHANCING COLLABORATIVE ROBOT COMMUNICATION WITH ELECTRICAL DISCHARGE MACHINE THROUGH MODBUS TCP INTEGRATION: A FEASIBILITY AND APPLICATION STUDY
    Țîțu A.M.
    Gusan V.
    Bogorin-Predescu A.
    International Journal of Mechatronics and Applied Mechanics, 2023, 14 : 27 - 34
  • [10] Probabilistic Obfuscation through Covert Channels
    Stephens, Jon
    Yadegari, Babak
    Collberg, Christian
    Debray, Saumya
    Scheidegger, Carlos
    2018 3RD IEEE EUROPEAN SYMPOSIUM ON SECURITY AND PRIVACY (EUROS&P 2018), 2018, : 243 - 257