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Reliability and performance evaluation of systems containing embedded rule-based expert systems

机译:包含嵌入式基于规则的专家系统的系统的可靠性和性能评估

摘要

A method for evaluating the reliability of real-time systems containing embedded rule-based expert systems is proposed and investigated. It is a three stage technique that addresses the impact of knowledge-base uncertainties on the performance of expert systems. In the first stage, a Markov reliability model of the system is developed which identifies the key performance parameters of the expert system. In the second stage, the evaluation method is used to determine the values of the expert system's key performance parameters. The performance parameters can be evaluated directly by using a probabilistic model of uncertainties in the knowledge-base or by using sensitivity analyses. In the third and final state, the performance parameters of the expert system are combined with performance parameters for other system components and subsystems to evaluate the reliability and performance of the complete system. The evaluation method is demonstrated in the context of a simple expert system used to supervise the performances of an FDI algorithm associated with an aircraft longitudinal flight-control system.
机译:提出并研究了一种基于嵌入式规则专家系统的实时系统可靠性评估方法。它是一种三阶段技术,用于解决知识库不确定性对专家系统性能的影响。在第一阶段,开发了系统的马尔可夫可靠性模型,该模型确定了专家系统的关键性能参数。在第二阶段,使用评估方法确定专家系统关键性能参数的值。可以通过使用知识库中不确定性的概率模型或通过使用敏感性分析来直接评估性能参数。在第三个也是最后一个状态下,专家系统的性能参数与其他系统组件和子系统的性能参数结合在一起,以评估整个系统的可靠性和性能。在一个简单的专家系统的上下文中演示了该评估方法,该专家系统用于监督与飞机纵向飞行控制系统相关的FDI算法的性能。

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