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首页> 外文期刊>Design Automation for Embedded Systems >Tabu search-based synthesis of digital microfluidic biochips with dynamically reconfigurable non-rectangular devices
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Tabu search-based synthesis of digital microfluidic biochips with dynamically reconfigurable non-rectangular devices

机译:基于禁忌搜索的具有动态可重构非矩形设备的数字微流控生物芯片合成

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摘要

Microfluidic biochips are replacing the conventional biochemical analyzers, and are able to integrate on-chip all the necessary functions for biochemical analysis. The “digital” microfluidic biochips are manipulating liquids not as a continuous flow, but as discrete droplets, and hence they are highly reconfigurable and scalable. A digital biochip is composed of a two-dimensional array of cells, together with reservoirs for storing the samples and reagents. Several adjacent cells are dynamically grouped to form a virtual device, on which operations are performed. So far, researchers have assumed that throughout its execution, an operation is performed on a rectangular virtual device, whose position remains fixed. However, during the execution of an operation, the virtual device can be reconfigured to occupy a different group of cells on the array, forming any shape, not necessarily rectangular. In this paper, we present a Tabu Search metaheuristic for the synthesis of digital microfluidic biochips, which, starting from a biochemical application and a given biochip architecture, determines the allocation, resource binding, scheduling and placement of the operations in the application. In our approach, we consider changing the device to which an operation is bound during its execution, to improve the completion time of the biochemical application. Moreover, we devise an analytical method for determining the completion time of an operation on a device of any given shape. The proposed heuristic has been evaluated using a real-life case study and ten synthetic benchmarks.
机译:微流体生物芯片正在取代传统的生化分析仪,并且能够在芯片上集成生化分析的所有必需功能。 “数字”微流体生物芯片不是以连续流的形式而是以离散的液滴的形式来操纵液体,因此它们具有很高的可重构性和可扩展性。数字生物芯片由细胞的二维阵列以及用于存储样品和试剂的容器组成。几个相邻的单元被动态分组以形成虚拟设备,在虚拟设备上执行操作。到目前为止,研究人员已经假设在执行过程中,将对矩形虚拟设备执行某个操作,该虚拟设备的位置保持不变。但是,在执行操作期间,可以将虚拟设备重新配置为占用阵列上不同组的单元,从而形成任何形状,不一定是矩形。在本文中,我们提出了禁忌搜索元启发式方法,用于数字微流控生物芯片的合成,该方法从生化应用程序和给定的生物芯片架构开始,确定了应用程序中操作的分配,资源绑定,调度和放置。在我们的方法中,我们考虑在操作执行期间更改绑定到该设备的设备,以缩短生化应用程序的完成时间。此外,我们设计了一种分析方法,用于确定任何给定形状的设备上的操作完成时间。拟议的启发式方法已通过实际案例研究和十个综合基准进行了评估。

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