An application of analog computers to the statistical analysis of time-variable networks

J. H. Laning, R. Battin
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引用次数: 8

Abstract

IN RECENT years an extensive body of mathematical techniques has been developed for the analysis of the response of linear constant coefficient control systems to stationary random processes as inputs. In many cases it is possible to achieve direct synthesis of the optimum system for an assigned task. For nonstationary inputs or variable coefficient systems, no corresponding theory exists, even though problems of this nature arise quite often in practice. In the present paper an analog method is presented for the rms error analysis of a class of nonstationary problems. However, no attempt is made at the synthesis of an optimum system. Following a brief discussion of analog methods applicable to the general nonstationary case, our attention is concentrated on the special problem of a variable coefficient linear system with a stationary random input. Exploitation of the properties of the adjoint system in this case is shown to reduce considerably the labor in computing rms errors in comparison with the general method for nonstationary inputs. The simulation of the adjoint system is shown to be readily obtainable from the simulation of the original system.
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模拟计算机在时变网络统计分析中的应用
近年来,为了分析线性常系数控制系统对作为输入的平稳随机过程的响应,发展了大量的数学技术。在许多情况下,有可能实现对指定任务的最佳系统的直接合成。对于非平稳输入或变系数系统,没有相应的理论存在,尽管这种性质的问题在实践中经常出现。本文提出了一类非平稳问题均方根误差分析的模拟方法。然而,没有尝试合成一个最优系统。在简要讨论了适用于一般非平稳情况的模拟方法之后,我们的注意力集中在具有平稳随机输入的变系数线性系统的特殊问题上。在这种情况下,与非平稳输入的一般方法相比,利用伴随系统的性质可以大大减少计算均方根误差的工作量。结果表明,伴随系统的仿真可以很容易地从原系统的仿真中得到。
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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