IEEE/ASME Transactions on Mechatronics · 2011 · 16 citations · 17 references
EngineeringPhysicsPhase-locked LoopNonlinear CircuitNonlinear ResonatorMechatronicsApplied PhysicsMechanical SystemsResonance TrackingNonlinear Vibration ControlFrequency ControlNonlinear ResonanceMicro-electromechanical SystemVibration ControlNatural FrequencyNonlinear Vibration
In this paper, the frequency control loop performance of nonlinear microelectromechanical resonators is investigated. A phase-locked loop (PLL) controller is used to track the resonance frequency of a nonlinear resonator and to compensate for the changes in the natural frequency. Based on the harmonic balance approach, governing equations of the dynamics of a nonlinear resonator are obtained, and using the mathematical model of the PLL, a new stability criterion for the closed-loop system is proposed. The relationship between the amplitude of the external driving force command and the stability of the control loop is elaborated for both hardening and softening nonlinearities. A nonlinear gain control strategy is proposed for the frequency-tracking loop, and its effectiveness is shown through simulation studies.
17
Nanoelectromechanical systems face the future
M. L. Roukes · Physics World · 2001 · 386 citations
Microelectromechanical filters for signal processing
Liwei Lin, Clark T.‐C. Nguyen, Roger T. Howe et al. · 1992 · 259 citations
Electrical Engineering, Engineering, Lateral Microresonators +14
Modelling the dynamics of a MEMS resonator: Simulations and experiments
Rob Mestrom, R.H.B. Fey, J.T.M. van Beek et al. · Sensors and Actuators A Physical · 2007 · 193 citations