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Ensuring efficiency and reliability of equipment with optimization of integrated tests

机译:通过优化集成测试的设备效率和可靠性

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摘要

The paper suggests a method for optimization of the process of integrated tests for complex technical equipment of automotive, aviation, and rocket systems based on an analysis of efficiency dynamics models. The method makes it possible to determine scopes of ground tests for complex technical equipment, which are minimally required to start field tests under the necessity to combine ground and field development. Exponential models of complex systems’ development are used as efficiency dynamics models for the whole testing process as well as efficiency dynamics models at various levels of the hierarchy of tests. The paper addresses an optimization task when the structure of tests at each level of the hierarchy is specified, i.e. efficiency dynamics models are determined for each level. The authors determine optimal points of transition from one level of tests to another, considering the random nature of efficiency dynamics parameters. A method for optimization using determination of the optimal scope of field tests is given.
机译:该论文提出了一种基于效率动力学模型的分析来优化汽车,航空和火箭系统复杂技术设备集成测试过程的方法。该方法使得可以确定复杂的技术设备的地面测试的范围,这是在结合地面和现场开发的必要性下启动现场测试所需的。复杂系统开发的指数型号用作整个测试过程的效率动力学模型以及各种级别的测试中的效率动态模型。纸张在指定了每个级别的每个级别的测试结构时,请解决优化任务,即确定每个级别的效率动态模型。考虑到效率动态参数的随机性,作者确定从一个测试水平到另一个测试的过渡点。给出了使用确定现场测试的最佳范围的优化方法。

著录项

  • 作者

    A.A. Boryaev; Zhu Yuqing;

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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