首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2014 >DESIGN METHOD TO ACHIEVE HIGH FREQUENCY STABILITY OF ELECTROSTATICALLY ACTUATED DOUBLY-CLAMPED NANO-OSCILLATORS
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DESIGN METHOD TO ACHIEVE HIGH FREQUENCY STABILITY OF ELECTROSTATICALLY ACTUATED DOUBLY-CLAMPED NANO-OSCILLATORS

机译:实现电致双钳位纳米振荡器的高频稳定性的设计方法

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摘要

Frequency stability is a desirable property for micro- and nanoelectromechanical system oscillators used in reference and timing applications. In case of doubly-clamped oscillators, resonant frequencies are highly sensitive to the operating temperature because of development of internal stresses due to thermal expansion under the restraint of fixed boundary conditions. In this paper, we present a design procedure to reduce the variation of resonant frequency with respect to change in operating temperature, in other words improve the frequency stability, by exploiting the interaction between electrostatic and geometric nonlinearities in electrostatically actuated doubly-clamped nano-oscillators. We have modeled the nano-oscillators using Euler-Bernoulli beam theory and Galerkin based reduced order modeling technique. We have examined first natural frequency variation due to temperature change for different carbon nan-otube oscillators and an optimization based design procedure has been devised for improving the frequency stability.
机译:对于参考和定时应用中使用的微和纳机电系统振荡器,频率稳定性是理想的特性。对于双钳位振荡器,谐振频率对工作温度高度敏感,因为在固定边界条件的约束下,由于热膨胀而产生的内应力会产生内应力。在本文中,我们提出了一种设计程序,可通过利用静电驱动的双钳位纳米振荡器中的静电和几何非线性之间的相互作用,来降低谐振频率随工作温度变化而变化的方法,换句话说,就是提高频率稳定性。 。我们已经使用Euler-Bernoulli束理论和基于Galerkin的降阶建模技术对纳米振荡器进行了建模。我们已经研究了不同碳纳米管振荡器因温度变化而引起的第一自然频率变化,并设计了一种基于优化的设计程序来改善频率稳定性。

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