Integrating Cybersecurity Into a Big Data Ecosystem

Anne M. Tall, C. Zou, Jun Wang
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Abstract

This paper provides an overview of the security service controls that are applied in a big data processing (BDP) system to defend against cyber security attacks. We validate this approach by modeling attacks and effectiveness of security service controls in a sequence of states and transitions. This Finite State Machine (FSM) approach uses the probable effectiveness of security service controls, as defined in the National Institute of Standards and Technology (NIST) Risk Management Framework (RMF). The attacks used in the model are defined in the ATT&CK™ framework. Five different BDP security architecture configurations are considered, spanning from a low-cost default BDP configuration to a more expensive, industry supported layered security architecture. The analysis demonstrates the importance of a multi-layer approach to implementing security in BDP systems. With increasing interest in using BDP systems to analyze sensitive data sets, it is important to understand and justify BDP security architecture configurations with their significant costs. The output of the model demonstrates that over the run time, larger investment in security service controls results in significantly more uptime. There is a significant increase in uptime with a linear increase in security service control investment. We believe that these results support our recommended BDP security architecture. That is, a layered architecture with security service controls integrated into the user interface, boundary, central management of security policies, and applications that incorporate privacy preserving programs. These results enable making BDP systems operational for sensitive data accessed in a multi-tenant environment.
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将网络安全融入大数据生态系统
本文概述了在大数据处理(BDP)系统中用于防御网络安全攻击的安全服务控制。我们通过在一系列状态和转换中对攻击和安全服务控制的有效性进行建模来验证这种方法。这种有限状态机(FSM)方法利用了安全服务控制的可能有效性,正如美国国家标准与技术研究院(NIST)风险管理框架(RMF)中定义的那样。模型中使用的攻击在ATT&CK™框架中定义。本文考虑了五种不同的BDP安全体系结构配置,从低成本的默认BDP配置到更昂贵的、行业支持的分层安全体系结构。分析证明了在BDP系统中实现安全的多层方法的重要性。随着人们对使用BDP系统分析敏感数据集越来越感兴趣,理解和证明BDP安全体系结构配置及其巨大的成本是很重要的。该模型的输出表明,在运行期间,对安全服务控制的较大投资将显著延长正常运行时间。随着安全服务控制投资的线性增加,正常运行时间显著增加。我们认为这些结果支持我们推荐的BDP安全架构。也就是说,将安全服务控件集成到用户界面、边界、安全策略的集中管理和包含隐私保护程序的应用程序中的分层体系结构。这些结果使BDP系统能够在多租户环境中访问敏感数据。
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