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首页> 外文期刊>Journal of circuits, systems and computers >A Multi-Objective-Driven Placement Technique for Digital Microfluidic Biochips
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A Multi-Objective-Driven Placement Technique for Digital Microfluidic Biochips

机译:数字微流控生物芯片的多目标驱动放置技术

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Microfluidic biochips are extensively utilized in biochemistry procedures due to their low cost, high precision and efficiency when compared to traditional laboratory procedures. Recent, computer-aided design (CAD) techniques enable a high performance in digital microfluidic biochip design. A key part in digital microfluidic biochip CAD design is the biochip placement procedure which determines the physical location for biological reactions during the physical design. For the biochip physical design, multiple objects need to be considered, such as the size of the chip and the total operation time. In this paper, a multi-objective optimization is proposed based on Markov decision processes (MDPs). The proposed method is evaluated on a set of standard biochip benchmarks. Compared to existing works, experimental results show that the total operation time, the capacity for routing and the chip size can be optimized simultaneously.
机译:与传统的实验室程序相比,微流体生物芯片因其低成本,高精度和高效率而被广泛应用于生物化学程序中。最近的计算机辅助设计(CAD)技术在数字微流控生物芯片设计中实现了高性能。数字微流控生物芯片CAD设计的关键部分是生物芯片放置程序,该程序确定物理设计过程中生物反应的物理位置。对于生物芯片的物理设计,需要考虑多个对象,例如芯片的大小和总操作时间。本文提出了一种基于马尔可夫决策过程(MDP)的多目标优化方法。所提出的方法在一组标准生物芯片基准上进行了评估。与现有工作相比,实验结果表明可以同时优化总工作时间,布线能力和芯片尺寸。

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