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Metamaterial piezoelectric beam with synthetic impedance shunts

机译:具有合成阻抗分流器的超材料压电梁

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We present a metamaterial beam based on a piezoelectric bimorph with segmented electrodes. Previously, we found the theoretical response of the beam using the assumed-modes method, and derived the effect of the shunt circuit impedance applied to each pair of electrodes. The structural response is governed by a frequency-dependent stiffness term, which depends on a material/geometry-based electromechanical coupling parameter and the impedance of the shunt circuits. A simple way to interpret the response of the system with frequency-dependent stiffness is the root locus method, which immediately yields the poles of each mode of the system using simple geometric rules. Case studies are shown for creating locally resonant bandgap with or without negative capacitance. To justify the use of these admittances that often require power input to the system, the concept of synthetic impedance is extended to symmetric voltages, as are encountered in series-connected piezoelectric bimorphs. Synthetic impedance or admittance is a method for obtaining an arbitrary impedance across a load by measuring the voltage and applying the corresponding current using digital signal processing and an analog circuit. Time domain simulations using these synthetic impedance circuits are compared to the ideal frequency domain results with good agreement. Surprisingly, the necessary digital sampling rate for stability is significantly higher than the Nyquist frequency.
机译:我们提出了基于带分段电极的压电双压电晶片的超材料束。以前,我们使用假定模式方法找到了电子束的理论响应,并得出了施加在每对电极上的并联电路阻抗的影响。结构响应由频率相关的刚度项控制,该刚度项取决于基于材料/几何形状的机电耦合参数和分流电路的阻抗。根源法是一种解释频率响应刚度的系统响应的简单方法,它是使用简单的几何规则立即产生系统各模态的极点的方法。案例研究显示了如何创建带或不带负电容的局部谐振带隙。为了证明经常需要向系统输入功率的这些导纳的使用,将合成阻抗的概念扩展到对称电压,就像在串联压电双压电晶片中遇到的那样。合成阻抗或导纳是一种通过使用数字信号处理和模拟电路测量电压并施加相应电流来获得负载两端任意阻抗的方法。将使用这些合成阻抗电路的时域仿真与理想频域结果进行比较,并具有很好的一致性。出乎意料的是,稳定所需的数字采样率明显高于奈奎斯特频率。

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