RISK ASSESSMENT MODELING OF ERP-SYSTEMS

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Radio Electronics Computer Science Control Pub Date : 2022-12-13 DOI:10.15588/1607-3274-2022-4-12
A. D. Kozhukhivskyi, O. Kozhukhivska
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引用次数: 0

Abstract

Context. Because assessing security risks is a complex and complete uncertainty process, and uncertainties are a major factor influencing valuation performance, it is advisable to use fuzzy methods and models that are adaptive to noncomputed data. The formation of vague assessments of risk factors is subjective, and risk assessment depends on the practical results obtained in the process of processing the risks of threats that have already arisen during the functioning of the organization and experience of security professionals. Therefore, it will be advisable to use models that can ade-quately assess fuzzy factors and have the ability to adjust their impact on risk assessment. The greatest performance indicators for solving such problems are neuro-fuzzy models that combine methods of fuzzy logic and artificial neural networks and systems, i.e. “human-like” style of considerations of fuzzy systems with training and simulation of mental phenomena of neural networks. To build a model for calculating the risk assessment of security, it is proposed to use a fuzzy product model. Fuzzy product models (Rule-Based Fuzzy Models/Systems) this is a common type of fuzzy models used to describe, analyze and simulate complex systems and processes that are poorly formalized. Objective. Development of a fuzzy model of quality of security risk assessment and protection of ERP systems through the use of fuzzy neural models. Method. To build a model for calculating the risk assessment of security, it is proposed to use a fuzzy product model. Fuzzy product models are a common kind of fuzzy models used to describe, analyze and model complex systems and processes that are poorly formalized. Results. Identified factors influencing risk assessment suggest the use of linguistic variables to describe them and use fuzzy variables to assess their qualities, as well as a system of qualitative assessments. The choice of parameters was substantiated and a fuzzy product model of risk assessment and a database of rules of fuzzy logical conclusion using the MATLAB application package and the Fuzzy Logic Toolbox extension package was implemented, as well as improved by introducing the adaptability of the model to experimental data by introducing neuro-fuzzy components into the model. The use of fuzzy models to solve the problems of security risk assessment, as well as the concept and construction of ERP systems and the analyzed problems of their security and vulnerabilities are considered. Conclusions. A fuzzy model has been developed risk assessment of the ERP system. Selected a list of factors affecting the risk of security. Methods of risk assessment of information resources and ERP-systems in general, assessment of financial losses from the implementation of threats, determination of the type of risk according to its assessment for the formation of recommendations on their processing in order to maintain the level of protection of the ERP-system are proposed. The list of linguistic variables of the model is defined. The structure of the database of fuzzy product rules – MISO-structure is chosen. The structure of the fuzzy model was built. Fuzzy variable models have been identified.
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erp系统的风险评估建模
上下文。由于安全风险评估是一个复杂的、完全不确定的过程,不确定性是影响评估绩效的主要因素,因此建议采用对非计算数据具有适应性的模糊方法和模型。对风险因素的模糊评估的形成是主观的,风险评估依赖于对组织运作过程中已经产生的威胁风险进行处理的过程中所获得的实际结果和安全专业人员的经验。因此,建议使用能够充分评估模糊因素并具有调整其对风险评估影响的能力的模型。解决这类问题的最佳性能指标是神经模糊模型,它结合了模糊逻辑和人工神经网络和系统的方法,即“类人”风格的模糊系统考虑与神经网络心理现象的训练和模拟。为了建立安全风险评估的计算模型,提出了使用模糊产品模型。模糊产品模型(基于规则的模糊模型/系统)这是一种常见的模糊模型类型,用于描述、分析和模拟形式化程度较差的复杂系统和过程。目标。利用模糊神经模型建立了ERP系统安全风险评估和保护质量的模糊模型。方法。为了建立安全风险评估的计算模型,提出了使用模糊产品模型。模糊产品模型是一种常用的模糊模型,用于描述、分析和建模形式化程度较差的复杂系统和过程。结果。已确定的影响风险评估的因素建议使用语言变量来描述它们,并使用模糊变量来评估它们的质量,以及一个定性评估系统。利用MATLAB应用程序包和模糊逻辑工具箱扩展包,验证了参数的选择,实现了风险评估的模糊产品模型和模糊逻辑结论规则库,并通过在模型中引入神经模糊分量,提高了模型对实验数据的适应性。利用模糊模型解决安全风险评估问题,考虑ERP系统的概念和结构,分析其安全性和脆弱性问题。结论。建立了ERP系统风险评估的模糊模型。选取影响安全风险的因素列表。对信息资源和erp系统的一般风险进行评估的方法,评估实施威胁造成的财务损失,根据其评估确定风险类型,形成对其处理的建议,以保持erp系统的保护水平。定义了模型的语言变量列表。选择了模糊积规则数据库的结构- miso结构。建立了模糊模型的结构。确定了模糊变量模型。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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