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A Novel Droplet Routing Algorithm for Digital Microfluidic Biochips

机译:一种用于数字微流体生物芯片的新型液滴路由算法

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One of the recent areas of research interest is the use of microfluidics for building up biochips, the digital microfluidic biochips (DMFB). This paper deals with a challenging problem related to the design of DMFB. Specifically the design problem considered is related to high performance droplet routing, where each droplet has single source location and single target location. The objectives are (i) minimizing the number of electrodes used in the DMFB, and (ii) minimizing the total routing time of all the droplets or arrival time of a droplet that is the last to arrive at its target(latest arrival time). We propose a simple algorithm for concurrent path allocation to multiple droplets, based on the Soukup's routing algorithm [22], together with the use of stalling, and possible detouring of droplets in cases of contentions. Selection of the droplets is based on their respective source to target Manhattan paths. The empirical results are quite encouraging.
机译:最近的研究兴趣领域之一是使用微流体来构建Biochips,数字微流体生物芯片(DMFB)。本文涉及与DMFB设计有关的具有挑战性的问题。具体地,所考虑的设计问题与高性能液滴路由相关,其中每个液滴具有单源位置和单个目标位置。目标是(i)最小化DMFB中使用的电极数,并最小化液滴的所有液滴或到达时间的总路由时间,这是最后一次到达其目标(最新到达时间)。我们提出了一种简单的算法,用于基于Soukup的路由算法[22],以及在符号情况下使用停滞,以及可能的液滴的可能脱滴,以及在符号的情况下,将一个简单的算法算法。液滴的选择基于它们各自的来源来定位曼哈顿路径。经验结果非常令人鼓舞。

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