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首页> 外文期刊>Journal of intelligent material systems and structures >Extending Poing-sensor Performance by Incorporating Distributed-sensors and Window Functions
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Extending Poing-sensor Performance by Incorporating Distributed-sensors and Window Functions

机译:通过结合分布式传感器和窗口功能来扩展定点传感器性能

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摘要

By integrating the methodologies of window functions and the method of image, the performance of the traditional piezoelectric point and distributed sensors, such as accelerometers, can be tailored by modifying their transfer functions in the spatial domain. The approach used in extending the sensor performance consists of developing a series of methodologies that can tailor the gain of the sensor transfer function while keeping the phase of the sensor transfer function intact. We can show that these spatially introduced design methodologies bypass the Bode gain-phase theorem, which states that gain and phase are interrelated for all minimum phase systems. The effects of adopting these sensors to flexible structure control and point sensors are examined in detail. It can also be shown that a series of low-pass filters, which exerts autonomous behavior between the gain and the phase of the sensor transfer function, can be introduced to significantly influence the performance of the sensing or controlling loops that incorporates these sensors. In addition, variables such as the power of the window functions adopted, the desired corner frequency, the length of the sensor structure, etc., all can be shown to have a decisive impact on the performance of the newly invented sensors. Both theoretical and experimental results of the underlying principles, design methodologies, and implementation process of these newly invented sensors are detailed.
机译:通过集成窗口函数的方法和图像的方法,可以通过在空间域中修改它们的传递函数来定制传统压电点和分布式传感器(如加速度计)的性能。扩展传感器性能所使用的方法包括开发一系列方法,这些方法可以调整传感器传递函数的增益,同时保持传感器传递函数的相位不变。我们可以证明,这些在空间上引入的设计方法都绕过了Bode增益相位定理,该定理指出,增益和相位对于所有最小相位系统都是相互关联的。详细研究了将这些传感器应用于柔性结构控制和点传感器的效果。还可以显示,可以引入一系列在增益和传感器传递函数的相位之间发挥自主行为的低通滤波器,以显着影响包含这些传感器的传感或控制环路的性能。另外,诸如所采用的窗函数的功率,期望的转折频率,传感器结构的长度等变量都可以显示为对新发明的传感器的性能具有决定性的影响。详细介绍了这些新发明的传感器的基本原理,设计方法和实现过程的理论和实验结果。

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