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A High-performance Homogeneous Droplet Routing Technique for MEDA-based Biochips

机译:基于Meda的Biochips一种高性能均匀液滴路由技术

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Recent advancement of microelectrode-dot-array (MEDA)-based architecture for digital microfluidic biochips has enabled a major enhancement in microfluidic operations for traditional lab-on-chip devices. One critical issue for MEDA-based biochips is the transportation of droplets. MEDA allows dynamic routing for droplets of different size. In this article, we propose a high-performance droplet routing technique for MEDA-based digital microfluidic biochips. First, we propose the basic concept of droplet movement strategy in MEDA-based design together with a definition of strictly shielded zones within the layout in MEDA architecture. Next, we propose transportation schemes of droplets for MEDA architecture under different blockage or crossover conditions and estimate route distances for each net in offline. Finally, a priority-based routing strategy combining various transportation schemes stated earlier has been proposed. Concurrent movement of each droplet is scheduled in a time-multiplexed manner. This poses critical challenges for parallel routing of individual droplets with optimal sharing of cells formulating a routing problem with higher complexity. The final compaction solution satisfies the timing constraint and improves fault tolerance. Simulations are carried out on standard benchmark circuits, namely, Benchmark suite I and Benchmark suite III. Experimental results show satisfactory improvements and prove a high degree of robustness for our proposed algorithm.
机译:最近的微电极 - 点阵列(MEDA)的数字微流体Biochips建筑的进步已经为传统的实验室设备进行了微流体操作的主要增强。基于Meda的Biochips的一个关键问题是运输液滴。 Meda允许动态路由不同尺寸的液滴。在本文中,我们为基于Meda的数字微流体生物芯片提出了一种高性能的液滴路由技术。首先,我们提出了基于Meda的设计中的液滴运动策略的基本概念以及Meda建筑中布局内严格屏蔽区域的定义。接下来,我们在不同的堵塞或交叉条件下提出了Meda架构的液滴的运输方案,并在离线中估算了每个网络的路线距离。最后,已经提出了一种基于优先的路由策略,这些路由策略结合了前面所述的各种运输方案。每个液滴的并发移动以时间复用方式调度。这对各个液滴的并行路由具有最佳共享的单个液滴的批判性挑战,其具有更高的复杂性的路由问题。最终的压实解决方案满足定时约束并提高容错。模拟在标准基准电路上进行,即基准套件I和基准套件III。实验结果表明,对我们所提出的算法来说,令人满意的改善并证明了高度的鲁棒性。

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