Title :
Automated Performance Optimisation and Layout Synthesis of MEMS Accelerometer with Sigma-Delta Force-Feedback Control Loop
Author :
Zhao, Chenxu ; Kazmierski, Tom J.
Author_Institution :
Sch. of Electron. & Comput. Sci., Univ. of Southampton, Southampton
Abstract :
This contribution presents a novel methodology for automated optimal design of a MEMS accelerometer with Sigma-Delta force-feedback control loop from user defined high-level performance specifications and design constraints. The proposed approach is based on a simulation-based optimization technology using a genetic algorithm. The layout of the mechanical sensing element is generated simultaneously with the optimal design parameters of the Sigma-Delta control loop. As currently available implementations of AMS HDL languages are not suitable for complex mixed-technology system optimisation, the algorithm as well as aa fast dedicated sigma-delta accelerometer simulator have been implemented in C++. The underlying accelerometer model includes the sense finger dynamics described by a partial differential equation, which enables accurate performance prediction of the sensing element embedded in a in mixed-technology control loop.
Keywords :
accelerometers; genetic algorithms; micromechanical devices; partial differential equations; AMS HDL languages; MEMS accelerometer; automated performance optimisation; genetic algorithm; layout synthesis; mechanical sensing element layout; mixed-technology system optimisation; partial differential equation; sense finger dynamics; sigma-delta force-feedback control loop; user defined high-level performance specifications; Accelerometers; Automatic control; Delta-sigma modulation; Force control; Genetic algorithms; Hardware design languages; Micromechanical devices; Optimal control; Optimization; Predictive models;
Conference_Titel :
Behavioral Modeling and Simulation Workshop, 2008. BMAS 2008. IEEE International
Conference_Location :
San Jose, CA
Print_ISBN :
978-1-4244-2896-0
DOI :
10.1109/BMAS.2008.4751233