Title :
Tree-Structured Knowledge in a Distributed Intelligent MEMS Application
Author :
Sato, Atsushi ; Huang, Runhe ; Dedu, Eugen ; Bourgeois, Julien
Author_Institution :
Hosei Univ., Japan
Abstract :
This paper proposes the tree-structured knowledge approach for performing part recognition in controlling MEMS-arrayed manipulation surfaces. In this approach, a new data structure, a tree-structured array, is used to store knowledge about models of the objects at an offline stage and to accumulate and share knowledge among neighboring active cells about shapes of objects which must be reconstructed and differentiated on a MEMS-arrayed surface at the online stage. Comparing this approach with the previous matrix-based approach, which contained redundant information in each cell and communication, and demanded excessively frequent comparison in shape differentiation, the current tree-structured knowledge approach aims to use one model for a shape in database, reducing the memory footprint, and avoiding frequent comparison in the differentiation phase. In this paper, both approaches are analysed and compared. Though the current approach shows better performance in terms of a smaller memory footprint and lower communication cost, it trades off the reduction of memory footprint against the probability of the differentiating.
Keywords :
electronic engineering computing; knowledge engineering; micromechanical devices; tree data structures; MEMS-arrayed manipulation surfaces; data structure; distributed control; distributed intelligent MEMS application; neighboring active cells; probability; shape differentiation; tree-structured knowledge approach; Arrays; Databases; Image reconstruction; Intelligent sensors; Shape; Surface treatment;
Conference_Titel :
Design, Control and Software Implementation for Distributed MEMS (dMEMS), 2012 Second Workshop on
Conference_Location :
Besancon
Print_ISBN :
978-1-4673-1203-5
DOI :
10.1109/dMEMS.2012.9