变结构对象可靠性值评估方法

O. Volkov, Sergii Ye. Hnatyuk, R. Odarchenko, Sergii O. Bodar, V. Simakhin
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引用次数: 0

摘要

介绍。现代无线电设备和零部件领域的研究表明,在全新的设备设计过程中,平均故障间隔时间往往被忽略。开发的目的是改进变结构对象的可靠性值评估方法,包括不同单元组在所有可能的使用模式下的工作时间。对象的集合理论模型,允许定量估计在不同的工作模式下使用的元素子集的功率,以评估无线电电子手段的可靠性指标,这取决于对象的结构和改变工作模式的顺序。利用集合论的数学工具,证明了无线电电子设备在运行过程中使用的元件功率最小时可靠性最高,反之亦然。方法。评估方法需要考虑到计算过程中没有考虑到的绝大多数次要方面:多模式工作、多功能、在使用过程中导致对象结构变化的超额可用性。结果。以第五代台站为例,选择了几套细节装置安装在设备中。考虑了维修服务的能力、细节的质量、工作方式等因素,计算得出了一定的结果。结论。对于变结构对象的有效性评价,提出了一种全新的、详细的方法。多模可用性可能是提高这种结构器件可靠性的重要特征。此外,对设备结构的某些单独部分进行评估对于延长工作期限比对设备进行整体评估更有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variable Structure Object Dependability Values Evaluation Method
Introduction. Modern researches at the domain of radiotechnical devices and parts are showing that mean time between failures often is omitting during the brand new device designing process. Purpose of the development is to improve the method of the reliability values evaluation of the objects with variable structure including the different sets of elements working time at all possible usage modes as intended. The set-theoretic models of objects that are allowed to estimate power of element subsets quantitatively used in different modes of operation for the purpose of evaluation the reliability indicators of radio-electronic means depending on the structure of the object and the order of changing modes of operation. With the help of the mathematical apparatus of set theory, it has been proven that the reliability of radio-electronic devices will be maximum at the minimum power of the elements used during operation and vice versa. Methods. Evaluation method is needed to take into account vast majority of the minor aspects that were not included before during the calculation procedures: multi-mode work, multi-functioning, excess availability that leads to the object structure changing during its usage for purpose. Results. Taking the fifth-generation station for the experiment, several detail sets were chosen for installation into the device. Competence of the repair service, quality of the details, work-mode was taken into account for the certain result calculation achieving. Conclusion. Brand new, detailed method has been developed for the effectiveness of the objects with variable structure evaluation. Multimode availability could be a significant reliability improving feature at the devices with such structure. Also, evaluation of some separate parts of the device structure would be much more useful for the working period prolongation than evaluation of the device as a whole.
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