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Feedback Control Theory for Constant‐Temperature Hot‐Wire Anemometers

机译:恒温热线风速计的反馈控制理论

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摘要

A feedback control theory for constant‐temperature hot‐wire anemometers is developed in the form of a linear differential equation of the third order. This theory allows a more detailed and clearer description of the anemometer's behavior than can be obtained by the frequency response method which has been applied until now to constant‐temperature hot‐wire anemometers. The theory is presented for the case of an equal arm bridge in the feedback system. Although the theory is restricted to small velocity fluctuations, it is assumed that large fluctuations may be measured correctly within approximately the same frequency range as small ones. The theory is applied to the optimization of the frequency response of constant‐temperature hot‐wire anemometers by means of a square wave test.
机译:以三阶线性微分方程的形式开发了用于恒温热线风速计的反馈控制理论。与至今为止应用于恒温热线风速仪的频率响应方法相比,该理论可以更详细,更清晰地描述风速仪的性能。针对反馈系统中等臂桥的情况,给出了该理论。尽管该理论仅限于较小的速度波动,但假设可以在与较小的大致相同的频率范围内正确测量较大的波动。该理论通过方波测试被应用于优化恒温热线风速计的频率响应。

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  • 来源
    《Review of Scientific Instruments》 |1967年第5期|共5页
  • 作者

    Freymuth Peter;

  • 作者单位

    Department of Aerospace Engineering Sciences, University of Colorado, Boulder, Colorado 80304;

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  • 原文格式 PDF
  • 正文语种 eng
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