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Progressive Network-Flow Based Power-Aware Broadcast Addressing for Pin-Constrained Digital Microfluidic Biochips

机译:基于PIN受限数字微流体Biochips的基于渐进网络流的功率感知广播寻址

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In recent emerging marketplace, designs for pin-constrained digital microfluidic biochips (PDMFBs) have received much attention due to the large impact on packaging and product cost. One of the major approaches, broadcast addressing, reduces the pin count by assigning a single control pin to multiple electrodes with mutually-compatible control signals. Prior works utilize this addressing scheme by minimally grouping electrode sets with non-conflict signal merging. However, merging control signals also introduces redundant actuations, which potentially cause a high power-consumption problem. Recent studies on PDMFBs have indicated that high power consumption not only decreases the product lifetime but also degrades the system reliability. Unfortunately, this power-aware design concern is still not readily available among current design automations of PDMFBs. To cope with these issues, we propose in this paper the first power-aware broadcast addressing for PDMFBs. Our algorithm simultaneously takes pin-count reduction and power-consumption minimization into consideration, thereby achieving higher integration and better design performance. Experimental results demonstrate the effectiveness of our algorithm.
机译:在最近的新兴市场中,由于对包装和产品成本的巨大影响,引脚受限数字微流体生物芯片(PDMFB)的设计受到了很大的关注。其中一个主要方法广播寻址,通过将单个控制引脚分配给具有相互兼容的控制信号的多个电极来减少引脚计数。先前作品通过使用非冲突信号合并的最小分组电极组来利用该寻址方案。然而,合并控制信号还引入了冗余致动,这可能导致高功率消耗问题。最近关于PDMFB的研究表明,高功耗不仅降低了产品寿命,而且降低了系统可靠性。不幸的是,这种功率感知的设计问题仍然不容易获得PDMFB的当前设计自动化之间。要应对这些问题,我们提出了本文的第一个用于PDMFB的电源感知广播寻址。我们的算法同时考虑了PIN计数和功耗最小化,从而实现了更高的集成和更好的设计性能。实验结果表明了我们算法的有效性。

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