DocumentCode :
2047791
Title :
The Matlab/Simulink modeling and numerical simulation of an analogue capacitive micro-accelerometer. Part 2: Closed loop
Author :
Grigorie, Teodor Lucian
fYear :
2008
fDate :
21-24 May 2008
Firstpage :
115
Lastpage :
121
Abstract :
The paper describes the closing of the loop for an analogue capacitive micro-accelerometer. The accelerometer is mathematical modeled, the mathematical relation being expressed both in complex domain and in time. Through equations linearization are made appreciations relative to the system quality in frequencies domain. Because of the great nonlinearities present in system at the level of capacitive transducer, to extend the utilization domain of the accelerometer, we need to close his loop. In the micro-accelerometers case, as a feedback force usually is used an electrostatics force. To improve the dynamical characteristics of the accelerometer the feedback voltage is taking from a regulator mounted on the direct way of the accelcrometer, after demodulator. The regulator type is established using the transfer function of the linearized system. Also, his tuning is made using the minimum error surface criteria Ziegler-Nichols and the numerical simulation. Finally, the dynamical performances of the closed loop accelerometer are tested and discussed with respect to the performances of open loop accelerometer.
Keywords :
accelerometers; closed loop systems; demodulators; electrostatics; feedback; mathematics computing; micrometry; numerical analysis; transfer functions; Matlab modeling; Simulink modeling; analogue capacitive micro-accelerometer; closed loop accelerometer; demodulator; electrostatics force; equations linearization; feedback force; frequencies appreciations; linearized system; minimum error surface criteria; numerical simulation; system quality; transfer function; Accelerometers; Force feedback; Frequency domain analysis; Mathematical model; Nonlinear equations; Numerical models; Numerical simulation; Performance evaluation; Regulators; Transducers; Block schemas; Capacitive Micro-Accelerometer; Mathematical modeling; Numerical simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Perspective Technologies and Methods in MEMS Design, 2008. MEMSTECH 2008. International Conference on
Conference_Location :
Polyana
Print_ISBN :
978-966-2191-00-4
Type :
conf
DOI :
10.1109/MEMSTECH.2008.4558756
Filename :
4558756
Link To Document :
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