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Integration of software reliability into systems reliability optimization.

机译:将软件可靠性集成到系统可靠性优化中。

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摘要

Reliability optimization originally developed for hardware systems is extended to incorporate software into an integrated system reliability optimization. This hardware-software reliability optimization problem is formulated into a mixed-integer programming problem. The integer variables are the number of redundancies, while the real variables are the components reliabilities.;To search a common framework under which hardware systems and software systems can be combined, a review and classification of existing software reliability models is conducted. A software redundancy model with common-cause failure is developed to represent the objective function. This model includes hardware redundancy with independent failure as a special case. A software reliability-cost function is then derived based on a binomial-type software reliability model to represent the constraint function.;Two techniques, the combination of heuristic redundancy method with sequential search method, and the Lagrange multiplier method with the branch-and-bound method, are proposed to solve this mixed-integer reliability optimization problem. The relative merits of four major heuristic redundancy methods and two sequential search methods are investigated through a simulation study. The results indicate that the sequential search method is a dominating factor of the combination method. Comparison of the two proposed mixed-integer programming techniques is also studied by solving two numerical problems, a series system with linear constraints and a bridge system with nonlinear constraints. The Lagrange multiplier method with the branch-and-bound method has been shown to be superior to all other existing methods in obtaining the optimal solution.;Finally an illustration is performed for integrating software reliability model into systems reliability optimization.
机译:最初为硬件系统开发的可靠性优化已扩展为将软件合并到集成的系统可靠性优化中。该硬件-软件可靠性优化问题被表述为混合整数编程问题。整数变量是冗余的数量,而实变量是组件的可靠性。为了搜索可将硬件系统和软件系统组合在一起的通用框架,对现有软件可靠性模型进行了回顾和分类。开发了具有常见原因故障的软件冗余模型来表示目标功能。该模型包括硬件冗余以及特殊情况下的独立故障。然后,基于二项式软件可靠性模型来推导表示约束函数的软件可靠性成本函数。两种技术:启发式冗余方法与顺序搜索方法相结合,拉格朗日乘数方法与分支和方法相结合。提出了一种边界方法来解决这种混合整数可靠性优化问题。通过仿真研究了四种主要启发式冗余方法和两种顺序搜索方法的相对优点。结果表明,顺序搜索方法是组合方法的主要因素。还通过解决两个数值问题,一个具有线性约束的串联系统和一个具有非线性约束的桥系统,研究了所提出的两种混合整数编程技术的比较。结果表明,拉格朗日乘子法与分支定界法在获得最优解方面优于所有其他现有方法。最后,给出了将软件可靠性模型集成到系统可靠性优化中的说明。

著录项

  • 作者

    Lin, Hsin-Hui.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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