DocumentCode :
1428727
Title :
A Two-Stage Integer Linear Programming-Based Droplet Routing Algorithm for Pin-Constrained Digital Microfluidic Biochips
Author :
Huang, Tsung-Wei ; Ho, Tsung-Yi
Author_Institution :
Dept. of Comput. Sci. & Inf. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Volume :
30
Issue :
2
fYear :
2011
Firstpage :
215
Lastpage :
228
Abstract :
With the increasing design complexities, the design of pin-constrained digital microfluidic biochips (PDMFBs) is of practical importance for the emerging marketplace. However, solutions of current pin-count reduction are inevitably limited by simply adopting it after the droplet routing stage. In this paper, we propose the first droplet routing algorithm for PDMFBs that can integrate pin-count reduction with droplet routing stage. Furthermore, our algorithm is capable of minimizing the number of control pins, the number of used cells, and the droplet routing time. We first present a basic integer linear programming (ILP) formulation to optimally solve the droplet routing problem for PDMFBs with simultaneous multiobjective optimization. Due to the complexity of this ILP formulation, we also propose a two-stage technique of global routing followed by incremental ILP-based routing to reduce the solution space. To further reduce the runtime, we present a deterministic ILP formulation that casts the original routing optimization problem into a decision problem, and solve it by a binary solution search method that searches in logarithmic time. Extensive experiments demonstrate that in terms of the number of the control pins, the number of the used cells, and the routing time, we obtain much better achievement than all the state-of-the-art algorithms in any aspect.
Keywords :
bioMEMS; drops; integer programming; lab-on-a-chip; linear programming; microfluidics; network routing; two-phase flow; PDMFB; binary solution search method; decision problem; deterministic ILP formulation; droplet routing algorithm; multiobjective optimization; pin-constrained digital microfluidic biochip; pin-count reduction; two-stage integer linear programming; Algorithm design and analysis; Arrays; Complexity theory; Electrodes; Pins; Routing; Timing; Broadcast-addressing biochips; integer linear programming; routing;
fLanguage :
English
Journal_Title :
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0070
Type :
jour
DOI :
10.1109/TCAD.2010.2097190
Filename :
5689349
Link To Document :
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