RELIABILITY OF THE CONTROL OF ELECTRONIC DEVICES BY LOW-FREQUENCY NOISE

D. Mykhalevskiy
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Abstract

The article examines the stages of input and output control of electronic equipment products according to the level of their own low-frequency noise, namely, the measurement of an informative parameter and its comparison with predetermined limits. It was established that for each type of control there is a need to have a methodology for assessing the compliance of control results with valid characteristics and its effectiveness. One of the main parameters of the effectiveness of all stages of control is the probability, which requires separate studies and the definition of a universal mechanism for its assessment. Therefore, the task was set to obtain a complete method of probability assessment for the input and output control of electronic equipment products by the level of their own noise. To determine the probabilistic characteristics of the control, the main informative parameters were investigated: the measuring noise voltage, which is random in nature, and the random error. It is established that the measured value has a confidence interval that takes into account measurement errors and determination of control limits. Control limits were obtained, on the basis of which analytical expressions were obtained for the distribution of the informative parameter within the specified limits for reliable and unreliable electronic products. Taking into account the limit of separation of products into suitable and unsuitable, control limits were proposed, which contain the coefficient of possible error cut-off. A generalized analytical expression for evaluating the probability of control is obtained, which takes into account the minimization of the effect of systematic and random factors influencing the result to increase the efficiency of input and output control on the level of low-frequency noise.
电子设备低频噪声控制的可靠性
本文考察了电子设备产品的输入和输出控制的阶段,根据其自身的低频噪声水平,即信息参数的测量及其与预定限值的比较。已经确定,对于每一种类型的控制,都需要有一种方法来评估控制结果是否符合有效特征及其有效性。所有控制阶段的有效性的主要参数之一是概率,这需要进行单独的研究,并确定一种普遍的评估机制。因此,本课题的任务是根据电子设备产品自身的噪声水平,获得一套完整的电子设备产品输入输出控制的概率评估方法。为了确定控制的概率特性,研究了主要的信息参数:测量噪声电压(本质上是随机的)和随机误差。建立了测量值具有考虑测量误差和控制限确定的置信区间。在此基础上,得到了可靠电子产品和不可靠电子产品在规定范围内信息参数分布的解析表达式。考虑到产品的适宜和不适宜分离的界限,提出了包含可能误差截止系数的控制界限。得到了一种评价控制概率的广义解析表达式,该表达式考虑了系统和随机因素对结果的影响最小化,以提高输入输出控制在低频噪声水平上的效率。
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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