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停电检测作为一个多目标优化问题。

Blackout detection as a multiobjective optimization problem.

作者信息

Chaudhary A M, Trachtenberg E A

机构信息

Department of Electrical and Computer Engineering, Drexel University, Philadelphia, PA 19104.

出版信息

Ann Biomed Eng. 1991;19(6):743-66. doi: 10.1007/BF02368079.

Abstract

We study new fast computational procedures for a pilot blackout (total loss of vision) detection in real time. Their validity is demonstrated by data acquired during experiments with volunteer pilots on a human centrifuge. A new systematic class of very fast suboptimal group filters is employed. The utilization of various inherent group invariancies of signals involved allows us to solve the detection problem via estimation with respect to many performance criteria. The complexity of the procedures in terms of the number of computer operations required for their implementation is investigated. Various classes of such prediction procedures are investigated, analyzed and trade offs are established. Also we investigated the validity of suboptimal filtering using different group filters for different performance criteria, namely: the number of false detections, the number of missed detections, the accuracy of detection and the closeness of all procedures to a certain bench mark technique in terms of dispersion squared (mean square error). The results are compared to recent studies of detection of evoked potentials using estimation. The group filters compare favorably with conventional techniques in many cases with respect to the above mentioned criteria. Their main advantage is the fast computational processing.

摘要

我们研究用于实时初步检测短暂性黑蒙(完全失明)的新的快速计算程序。在人体离心机上对志愿飞行员进行实验期间获取的数据证明了这些程序的有效性。采用了一类新的非常快速的次优分组滤波器。利用所涉及信号的各种固有分组不变性,使我们能够通过针对许多性能标准进行估计来解决检测问题。研究了这些程序在实现所需的计算机操作数量方面的复杂性。研究、分析了各类此类预测程序,并确定了权衡取舍。此外,我们还研究了使用不同分组滤波器针对不同性能标准进行次优滤波的有效性,这些性能标准包括:误检数量、漏检数量、检测准确性以及所有程序在分散平方(均方误差)方面与某一基准技术的接近程度。将结果与最近关于使用估计检测诱发电位的研究进行了比较。在上述标准方面,分组滤波器在许多情况下优于传统技术。它们的主要优点是计算处理速度快。

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