A network-flow based valve-switching aware binding algorithm for flow-based microfluidic biochips

Kai-Han Tseng, Sheng-Chi You, W. H. Minhass, Tsung-Yi Ho, P. Pop
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引用次数: 12

Abstract

Designs of flow-based microfluidic biochips are receiving much attention recently because they replace conventional biological automation paradigm and are able to integrate different biochemical analysis functions on a chip. However, as the design complexity increases, a flow-based microfluidic biochip needs more chip-integrated micro-valves, i.e., the basic unit of fluid-handling functionality, to manipulate the fluid flow for biochemical applications. Moreover, frequent switching of micro-valves results in decreased reliability. To minimize the valve-switching activities, we develop a network-flow based resource binding algorithm based on breadth-first search (BFS) and minimum cost maximum flow (MCMF) in architectural-level synthesis. The experimental results show that our methodology not only makes significant reduction of valve-switching activities but also diminishes the application completion time for both real-life applications and a set of synthetic benchmarks.
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基于流量的微流控生物芯片基于网络流的阀开关感知绑定算法
基于流动的微流控生物芯片取代了传统的生物自动化模式,能够在芯片上集成不同的生化分析功能,近年来备受关注。然而,随着设计复杂性的增加,基于流动的微流体生物芯片需要更多的芯片集成微阀,即流体处理功能的基本单元,以控制生物化学应用中的流体流动。此外,微阀的频繁开关导致可靠性降低。为了最大限度地减少阀门切换活动,我们开发了一种基于网络流的资源绑定算法,该算法基于架构级综合中的宽度优先搜索(BFS)和最小成本最大流量(MCMF)。实验结果表明,我们的方法不仅显著减少了阀门开关活动,而且减少了实际应用和一组合成基准的应用程序完成时间。
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