Collaborative security assessment of cloud-edge-device distributed systems based on order parameters

Distributed computing systems based on cloud-edge-device have been successfully serving thousands of applications and have become mainstream, characterized by a wide audience, high user experience requirements, and high security expectations. However, in recent years, frequent attacks on cloud-edge-...

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Main Authors: FAN Qigang, JIANG Zhongyuan, LI Xinghua, MA Jianfeng
Format: Article
Language:English
Published: POSTS&TELECOM PRESS Co., LTD 2024-06-01
Series:网络与信息安全学报
Subjects:
Online Access:http://www.cjnis.com.cn/thesisDetails#10.11959/j.issn.2096-109x.2024038
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author FAN Qigang
JIANG Zhongyuan
LI Xinghua
MA Jianfeng
author_facet FAN Qigang
JIANG Zhongyuan
LI Xinghua
MA Jianfeng
author_sort FAN Qigang
collection DOAJ
description Distributed computing systems based on cloud-edge-device have been successfully serving thousands of applications and have become mainstream, characterized by a wide audience, high user experience requirements, and high security expectations. However, in recent years, frequent attacks on cloud-edge-device systems have resulted in serious security risks and significant economic losses for users. The defense mechanisms of cloud-edge-device systems have been found to operate independently, leading to major differences in the ability to resist risks, which makes it difficult to eliminate global security risks. Security measures of the pre-configuration and post-event remedy type have been found to hardly meet the security needs of high-load and high real-time in cloud-edge-device collaborative networks. The root cause has been identified as the hierarchical architecture of cloud-edge-device systems being separate, and no effective collaborative defense system has been formed, leading to problems such as difficult cross-domain security governance, poor real-time performance, and difficult collaborative consistency evaluation. Firstly, a cloud-edge-device collaborative security architecture that integrates real-time perception, dynamic decision, and proactive defense was proposed. The cloud-edge-device security collaboration capability was established through rigorous theoretical consistency proofs. Secondly, a collaborative security assessment model based on the order parameter was put forward to achieve consistency of risk perception, decision, and defense. In this way, the efficient and low-cost collaborative protection of security risks could be realized to maximize systemic security benefits. Finally, the consistency theory and assessment method were verified through simulations. The results show that the proposed collaborative security system and consistency evaluation model are correct and effective.
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institution Kabale University
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language English
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series 网络与信息安全学报
spelling doaj-art-16b436b91de9463898692d50a30e66a92025-01-15T03:17:13ZengPOSTS&TELECOM PRESS Co., LTD网络与信息安全学报2096-109X2024-06-0110385167188632Collaborative security assessment of cloud-edge-device distributed systems based on order parametersFAN QigangJIANG ZhongyuanLI XinghuaMA JianfengDistributed computing systems based on cloud-edge-device have been successfully serving thousands of applications and have become mainstream, characterized by a wide audience, high user experience requirements, and high security expectations. However, in recent years, frequent attacks on cloud-edge-device systems have resulted in serious security risks and significant economic losses for users. The defense mechanisms of cloud-edge-device systems have been found to operate independently, leading to major differences in the ability to resist risks, which makes it difficult to eliminate global security risks. Security measures of the pre-configuration and post-event remedy type have been found to hardly meet the security needs of high-load and high real-time in cloud-edge-device collaborative networks. The root cause has been identified as the hierarchical architecture of cloud-edge-device systems being separate, and no effective collaborative defense system has been formed, leading to problems such as difficult cross-domain security governance, poor real-time performance, and difficult collaborative consistency evaluation. Firstly, a cloud-edge-device collaborative security architecture that integrates real-time perception, dynamic decision, and proactive defense was proposed. The cloud-edge-device security collaboration capability was established through rigorous theoretical consistency proofs. Secondly, a collaborative security assessment model based on the order parameter was put forward to achieve consistency of risk perception, decision, and defense. In this way, the efficient and low-cost collaborative protection of security risks could be realized to maximize systemic security benefits. Finally, the consistency theory and assessment method were verified through simulations. The results show that the proposed collaborative security system and consistency evaluation model are correct and effective.http://www.cjnis.com.cn/thesisDetails#10.11959/j.issn.2096-109x.2024038cloud-edge-devicecollaborative consistencysecurity assessmentorder parameter
spellingShingle FAN Qigang
JIANG Zhongyuan
LI Xinghua
MA Jianfeng
Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
网络与信息安全学报
cloud-edge-device
collaborative consistency
security assessment
order parameter
title Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
title_full Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
title_fullStr Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
title_full_unstemmed Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
title_short Collaborative security assessment of cloud-edge-device distributed systems based on order parameters
title_sort collaborative security assessment of cloud edge device distributed systems based on order parameters
topic cloud-edge-device
collaborative consistency
security assessment
order parameter
url http://www.cjnis.com.cn/thesisDetails#10.11959/j.issn.2096-109x.2024038
work_keys_str_mv AT fanqigang collaborativesecurityassessmentofcloudedgedevicedistributedsystemsbasedonorderparameters
AT jiangzhongyuan collaborativesecurityassessmentofcloudedgedevicedistributedsystemsbasedonorderparameters
AT lixinghua collaborativesecurityassessmentofcloudedgedevicedistributedsystemsbasedonorderparameters
AT majianfeng collaborativesecurityassessmentofcloudedgedevicedistributedsystemsbasedonorderparameters