Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense

Cyberspace Mimic Defense (CMD) is a proactive defense theory proposed in recent years to deal with vulnerability and backdoor threats that are common in information systems. Different from moving target defense (MTD), CMD can obtain foundation by verifying multiple results from isolated, heterogeneo...

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Main Authors: Wei Guo, Zhaoqi Wu, Fan Zhang, Jiangxing Wu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8938780/
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spelling doaj-7978e66dec0b44249701ab2c56e4f5b12021-03-30T01:11:54ZengIEEEIEEE Access2169-35362020-01-0181517153310.1109/ACCESS.2019.29616448938780Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic DefenseWei Guo0https://orcid.org/0000-0002-1023-7277Zhaoqi Wu1https://orcid.org/0000-0001-7857-2875Fan Zhang2https://orcid.org/0000-0001-7456-8377Jiangxing Wu3https://orcid.org/0000-0002-7668-5160National Digital Switching System Engineering and Technological Research and Development Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research and Development Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research and Development Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research and Development Center, Zhengzhou, ChinaCyberspace Mimic Defense (CMD) is a proactive defense theory proposed in recent years to deal with vulnerability and backdoor threats that are common in information systems. Different from moving target defense (MTD), CMD can obtain foundation by verifying multiple results from isolated, heterogeneous, and parallel running spaces, thus initiating a more targeted defensive action, such as scheduling and structure transformation. However, scheduling sequence control is a severe problem in this process, which needs to select a series of scheduling time and take into account security, efficiency, and robustness for variable attack situations. Inspired by the traffic and congestion control mechanism in computer networks, this paper proposed a sliding window-based scheduling sequence control method. By setting driver events to trigger the window “sliding,” the control parameters update and adapt to the current state accordingly. Then, considering internal resource constraints and external attack situations, a two-factor driver on variable period and exception threshold with their corresponding calculations are specified. Evaluations show that this method can maintain good performance under different scenarios, which proves to be an effective solution for scheduling sequence control in CMD.https://ieeexplore.ieee.org/document/8938780/Cyberspace mimic defensescheduling sequence controlsliding windowrobustnessadaptability
collection DOAJ
language English
format Article
sources DOAJ
author Wei Guo
Zhaoqi Wu
Fan Zhang
Jiangxing Wu
spellingShingle Wei Guo
Zhaoqi Wu
Fan Zhang
Jiangxing Wu
Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
IEEE Access
Cyberspace mimic defense
scheduling sequence control
sliding window
robustness
adaptability
author_facet Wei Guo
Zhaoqi Wu
Fan Zhang
Jiangxing Wu
author_sort Wei Guo
title Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
title_short Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
title_full Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
title_fullStr Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
title_full_unstemmed Scheduling Sequence Control Method Based on Sliding Window in Cyberspace Mimic Defense
title_sort scheduling sequence control method based on sliding window in cyberspace mimic defense
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Cyberspace Mimic Defense (CMD) is a proactive defense theory proposed in recent years to deal with vulnerability and backdoor threats that are common in information systems. Different from moving target defense (MTD), CMD can obtain foundation by verifying multiple results from isolated, heterogeneous, and parallel running spaces, thus initiating a more targeted defensive action, such as scheduling and structure transformation. However, scheduling sequence control is a severe problem in this process, which needs to select a series of scheduling time and take into account security, efficiency, and robustness for variable attack situations. Inspired by the traffic and congestion control mechanism in computer networks, this paper proposed a sliding window-based scheduling sequence control method. By setting driver events to trigger the window “sliding,” the control parameters update and adapt to the current state accordingly. Then, considering internal resource constraints and external attack situations, a two-factor driver on variable period and exception threshold with their corresponding calculations are specified. Evaluations show that this method can maintain good performance under different scenarios, which proves to be an effective solution for scheduling sequence control in CMD.
topic Cyberspace mimic defense
scheduling sequence control
sliding window
robustness
adaptability
url https://ieeexplore.ieee.org/document/8938780/
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AT jiangxingwu schedulingsequencecontrolmethodbasedonslidingwindowincyberspacemimicdefense
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