Reconcile security requirements for intelligent vehicles

Madhusudan Singh, Shiho Kim
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引用次数: 5

Abstract

An intelligent vehicle (Self-driving) is an emerging research area. Presently, many industries, research organizations and universities are working on intelligent vehicles. Some researchers are working on security issues of intelligent vehicles (IV). Most of the researchers focus on static security (static security cannot adapt to the changes in the environment). Since the environment of IV is dynamically changing, the approach of static security is not feasible to provide reconcile cyber-security in IV. Reconciling systems evolve in a very uncertain environment and try to fulfill a business objective by sensing the environment, analyzing it and taking the best decision according to its requirements. In this paper, we discuss reconcile security requirements engineering to provide cyber-security in IV. To fulfill our objective, we use the goal modeling approach of RE, the Knowledge Acquisition in Automated Specification (KAOS) Model approach, and designed it using Objectiver tool to find the reconciling requirements. Self-reconciliation in requirement engineering is acquired by five building blocks such as Monitor, Analyze, Plan, Execute and Knowledge i.e. [MAPE-K] loop architecture, which provides the reconciling capabilities to our proposed reconciling requirements for cyber-security in IV.
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协调智能车辆的安全需求
智能车辆(自动驾驶)是一个新兴的研究领域。目前,许多行业、研究机构和大学都在研究智能汽车。一些研究人员正在研究智能车辆的安全问题(四)。大多数研究人员关注的是静态安全(静态安全不能适应环境的变化)。由于IV的环境是动态变化的,静态安全的方法无法在IV中提供协调网络安全。协调系统在非常不确定的环境中进化,并试图通过感知环境,分析环境并根据其需求做出最佳决策来实现业务目标。在本文中,我们讨论了协调安全需求工程,以提供网络安全。为了实现我们的目标,我们使用了RE的目标建模方法,即自动规范中的知识获取(KAOS)模型方法,并使用objective - ver工具进行了设计,以找到协调需求。需求工程中的自协调是由五个构建块获得的,例如Monitor、Analyze、Plan、Execute和Knowledge,即[MAPE-K]循环体系结构,它为我们在第四章中提出的网络安全协调需求提供了协调能力。
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