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A reliability model for real-time rule-based expert systems

机译:基于规则的实时专家系统的可靠性模型

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This paper uses two modeling tools to analyze the reliability of real-time expert systems: (1) a stochastic Petri net (SPN) for computing the conditional response time distribution given that a fixed number of expert system match-select-act cycles are executed, and (2) a simulation search tree for computing the distribution of expert system match-select-act cycles for formulating a control strategy in response to external events. By modeling the intrinsic match-select-act cycle of expert systems and associating rewards rates with markings of the SPN, the response time distribution for the expert system to reach a decision can be computed as a function of design parameters, thereby facilitating the assessment of reliability of expert systems in the presence of real-time constraints. The utility of the reliability model is illustrated with an expert system characterized by a set of design conditions under a real-time constraint. This reliability model allows the system designers to: (1) experiment with a range of selected parameter values; and (2) observe their effects on system reliability.
机译:本文使用两种建模工具来分析实时专家系统的可靠性:(1)假设执行了固定数量的专家系统匹配-选择-作用循环,则随机Petri网(SPN)用于计算条件响应时间分布(2)模拟搜索树,用于计算专家系统匹配选择行动周期的分布,以制定响应外部事件的控制策略。通过对专家系统的固有匹配选择行动周期进行建模,并将奖励率与SPN的标记相关联,可以根据设计参数计算专家系统做出决策的响应时间分布,从而有助于评估实时约束下专家系统的可靠性。可靠性模型的实用性通过一个专家系统来说明,该专家系统的特征是在实时约束下的一组设计条件。该可靠性模型使系统设计者能够:(1)使用一系列选定的参数值进行实验; (2)观察它们对系统可靠性的影响。

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