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Diagnostics and health monitoring of a dc-dc forward converter through time series analysis.

机译:通过时间序列分析对DC-DC正激转换器进行诊断和健康监控。

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摘要

Electronic systems present new challenges in the area of health management. The means by which electronic systems degrade and fail separate themselves from mechanical systems and the approaches used for health management of these systems. This work presents a novel approach to health management and diagnostics for switched-mode dc-dc power supplies. The approach implements Symbolic Analysis in order to statistically model the underlying system dynamics. A healthy baseline model serves as a means to compare future models in order to determine and quantify degradation within the system.;The methodology is validated through four independent accelerated life tests of dc-dc forward converters. It is well known that dc-dc converters do not operate at a single load point and constantly change as needed. The statistical approach uses time series data obtained from the dc-dc converter that is affected by the current loading conditions of the converter. In order to normalize the results, a means to take the loading of the converter into account is also derived and demonstrated. In addition, a complete study in the area of time series data sampling is undertaken for the approach. The work is concluded by demonstrating the approach of prognostication or prediction of remaining useful life using the symbolic methodology by implementation of a linear Kalman Predictor.
机译:电子系统在健康管理领域提出了新的挑战。电子系统退化和失效的方法将自身与机械系统以及这些系统的健康管理方法分开。这项工作提出了一种用于开关模式dc-dc电源的健康管理和诊断的新颖方法。该方法实现了符号分析,以便对基础系统动力学进行统计建模。健康的基准模型可作为比较未来模型以确定和量化系统内性能下降的一种手段。该方法已通过DC-DC正激转换器的四个独立的加速寿命测试进行了验证。众所周知,dc-dc转换器不会在单个负载点上运行,而是根据需要不断变化。统计方法使用从DC-DC转换器获得的时间序列数据,该数据受转换器当前负载条件的影响。为了使结果标准化,还导出并展示了一种考虑转换器负载的方法。此外,对该方法还进行了时间序列数据采样领域的全面研究。通过使用线性卡尔曼预测器的符号方法论证了预测或预测剩余使用寿命的方法,可以完成这项工作。

著录项

  • 作者

    Bower, Gregory M.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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