生物芯片
可靠性
数字微流体
计算机科学
故障注入
故障检测与隔离
嵌入式系统
微流控
实验室晶片
计算机硬件
实时计算
工程类
人工智能
软件
生物信息学
纳米技术
电压
执行机构
软件工程
电气工程
生物
材料科学
程序设计语言
电润湿
作者
Sourav Ghosh,Dolan Maity,Arijit Chowdhury,Surajit Kumar Roy,Chandan Giri
标识
DOI:10.1109/ats47505.2019.00027
摘要
Digital microfluidic biochip is a revolutionizing platform to execute complex bioassay operations concurrently. Dependability is an important feature of digital microfluidic biochip which is used for many safety-critical applications, such as point-of-care health assessment, air-quality monitoring, and food-safety testing. Therefore to ensure the proper functionality of the biochip a robust offline and online testing is required. Testing can be done before manufacturing or concurrently with other bioassay operations. In this work, we are presenting an efficient parallel testing and diagnosis scheme to reveal the location of all the faulty electrodes. Most of the algorithms present in the literature are mainly focused on single fault identification. But the diagnosis of biochip with multiple faults is not addressed properly. Even some of the algorithms have incorrectly classified the non faulty electrode as a faulty electrode. Thus in this paper, we are mainly focusing on the detection of multiple faults, correctly and efficiently. Moreover, this testing method is capable to check the given biochip with other concurrently running bioassay operations.
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