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Reliability Enhancement of MEMS Lateral Comb Resonators Under Fault Conditions

机译:故障条件下MEMS横向梳齿谐振器的可靠性增强

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The delicate structure of microelectromechanical systems (MEMS) limits their reliability in cases of fault occurrence. Control systems can enhance their reliability of operation by providing fault robust systems. This paper illustrates a method for the safe operation of lateral comb resonators (LCR) under faulty conditions. Different types of fault are fabricated at chip level and experimentally tested in order to demonstrate the effectiveness of the reliability enhancement of operation in LCRs. Mass change and folded spring structural defects influence the device''s behavior and reduce its reliability of operation. Here, model reference adaptive controllers (MRACs) are effectively used to enhance the reliability of faulty devices. Reliable operation of a +5% additional mass considering environmental conditions and asymmetries on the device, demand almost 80% higher control effort whereas +20% in case of broken trusses or +46% in case of adhesion point fault on a beam of folded springs. The simulation and experiment results demonstrate successful application of MRAC for reliable operation of LCRs by providing a fault-robust system.
机译:在发生故障的情况下,微机电系统(MEMS)的精密结构限制了它们的可靠性。控制系统可以通过提供故障鲁棒系统来增强其操作可靠性。本文说明了一种在故障条件下安全运行横向梳状谐振器(LCR)的方法。在芯片级别制造了不同类型的故障,并进行了实验测试,以证明增强LCR操作可靠性的有效性。质量变化和折叠弹簧结构缺陷会影响设备的性能并降低其运行可靠性。在这里,模型参考自适应控制器(MRAC)有效地用于提高故障设备的可靠性。考虑到环境条件和设备上的不对称性,要可靠地增加+ 5%的附加质量,需要增加近80%的控制力度,而在桁架断裂的情况下需要+ 20%的控制力,而在折叠弹簧梁上出现粘结点故障时则需要+ 46%的控制力。仿真和实验结果表明,通过提供故障稳健的系统,MRAC成功应用于LCR的可靠运行。

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