Deriving the optimal structure of N-version software under resource requirements and cost/timing constraints

I. Kovalev, K. Großpietsch
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引用次数: 11

Abstract

The paper presents an approach to systematically derive the optimal structure of fault-tolerant software for safety-critical control processes, with respect to resource requirements and cost- and timing constraints. For the modelling of the control process, a graph model description is used; basic static distributed scheduling and allocation decisions for the tasks are performed and task computation times are defined. Adaptive optimization techniques are used to derive the optimal solution for the given requirements. The application of the method in practice is illustrated by the example of a software system for spacecraft control.
在资源需求和成本/时间约束下,推导出n版本软件的最优结构
本文提出了一种基于资源需求、成本和时间约束,系统地推导出安全关键控制过程容错软件的最优结构的方法。对于控制过程的建模,采用图模型描述;执行任务的基本静态分布式调度和分配决策,并定义任务计算时间。采用自适应优化技术推导给定需求的最优解。以航天器控制软件系统为例,说明了该方法在实际中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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