Home /Research /On algebraic and graph structural properties of assembly Petri net
MANIPULATION

On algebraic and graph structural properties of assembly Petri net

Tatsuya Suzuki, Takahide Kanehara, Akio Inaba, S. Okuma

Year
2002
Citations
63

Abstract

Assembly planning is a significant problem for automatic assembling using robotic manipulators. An assembly planning method using a Petri net is presented. The assembly network is modeled by using the Petri net with reference to the conventional and/or net. The state shift equation of the Petri net, which is a mathematical model of the net, is analyzed. From this analysis, it is clarified that the set of a basis solution of a state shift matrix is an actual assembly sequence. When considering an optimization problem which minimizes a summation of a weight value of all tasks included in the assembly sequence, a linear programming (LP) technique can be used. Some numerical examples to certify the validity of the proposed analysis are shown.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Petri netComputer scienceLinear programmingSet (abstract data type)Net (polyhedron)GraphSequence (biology)State (computer science)Algebraic numberInteger programming

Related papers

Browse all MANIPULATION papers