DocumentCode :
2759911
Title :
Routing-aware placement technique for intelligent collision avoidance in digital microfluidic biochips
Author :
Roy, Pranab ; Rahaman, Hafizur ; Dasgupta, Parthasarathi
Author_Institution :
Sch. of VLSI Technol., Bengal Eng. & Sci. Univ., Shibpur, India
fYear :
2011
fDate :
19-20 July 2011
Firstpage :
85
Lastpage :
94
Abstract :
The current advancement in microfluidics and microfabrication technology makes it possible to realize true multifunctional lab-on-chip systems that can replace a real life laboratory system with a miniaturized microsystem. The huge advantages of such systems are that they enable fast, easy-to-use, cost-effective detection methods which find major application in the areas of clinical diagnostics, DNA sequencing, drug discovery and other biochemical analyses and applications. As the design of droplet based microfluidic biochips tends to incorporate concurrent execution of multiple bioassays in a single chip, the design complexity as well as system integration issues begin to pose major challenges. A potential CAD problem in this context is the concurrent routing of droplets in DMFBs. This has direct impact on overall reaction time as well as cell usage and pin requirements (specifically in direct-addressing biochips). In this paper we propose a routing-aware placement algorithm for droplets in a digital microfluidic system with a given prescheduled module arrangement. The objective is to enhance the routing process by intelligent collision avoidance, optimized stalling and detour, which finally results in stark improvement in latest arrival time and resource utilization. The proposed algorithm is tested on benchmark suite I for 2-pin droplets and Benchmark suite III for multipin droplets. The results obtained are quite encouraging.
Keywords :
DNA; bioMEMS; lab-on-a-chip; microfluidics; network routing; Benchmark suite III; CAD problem; DNA sequencing; biochemical analyses; clinical diagnostics; digital microfluidic biochips; drug discovery; intelligent collision avoidance; lab-on-chip systems; microfabrication technology; miniaturized microsystem; multipin droplets; routing-aware placement; Arrays; Compaction; Electrodes; Microfluidics; Mixers; Routing; Algorithms; Digital micro fluidics; Placement; droplet Routing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quality Electronic Design (ASQED), 2011 3rd Asia Symposium on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4577-0145-0
Type :
conf
DOI :
10.1109/ASQED.2011.6111707
Filename :
6111707
Link To Document :
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