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Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips

Publication ,  Journal Article
Hu, K; Hsu, BN; Madison, A; Chakrabarty, K; Fair, R
Published in: Proceedings -Design, Automation and Test in Europe, DATE
January 1, 2013

Advances in digital microfluidics and integrated sensing hold promise for a new generation of droplet-based biochips that can perform multiplexed assays to determine the identity of target molecules. Despite these benefits, defects and erroneous fluidic operations remain a major barrier to the adoption and deployment of these devices. We describe the first integrated demonstration of cyberphysical coupling in digital microfluidics, whereby errors in droplet transportation on the digital microfluidic platform are detected using capacitive sensors, the test outcome is interpreted by control hardware, and software-based error recovery is accomplished using dynamic reconfiguration. The hardware/software interface is realized through seamless interaction between control software, an off-the-shelf microcontroller and a frequency divider implemented on an FPGA. Experimental results are reported for a fabricated silicon device and links to videos are provided for the first-ever experimental demonstration of cyberphysical coupling and dynamic error recovery in digital microfluidic biochips. © 2013 EDAA.

Duke Scholars

Published In

Proceedings -Design, Automation and Test in Europe, DATE

DOI

ISSN

1530-1591

Publication Date

January 1, 2013

Start / End Page

559 / 564
 

Citation

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MLA
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Hu, K., Hsu, B. N., Madison, A., Chakrabarty, K., & Fair, R. (2013). Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips. Proceedings -Design, Automation and Test in Europe, DATE, 559–564. https://doi.org/10.7873/date.2013.124
Hu, K., B. N. Hsu, A. Madison, K. Chakrabarty, and R. Fair. “Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips.” Proceedings -Design, Automation and Test in Europe, DATE, January 1, 2013, 559–64. https://doi.org/10.7873/date.2013.124.
Hu K, Hsu BN, Madison A, Chakrabarty K, Fair R. Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips. Proceedings -Design, Automation and Test in Europe, DATE. 2013 Jan 1;559–64.
Hu, K., et al. “Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips.” Proceedings -Design, Automation and Test in Europe, DATE, Jan. 2013, pp. 559–64. Scopus, doi:10.7873/date.2013.124.
Hu K, Hsu BN, Madison A, Chakrabarty K, Fair R. Fault detection, real-time error recovery, and experimental demonstration for digital microfluidic biochips. Proceedings -Design, Automation and Test in Europe, DATE. 2013 Jan 1;559–564.

Published In

Proceedings -Design, Automation and Test in Europe, DATE

DOI

ISSN

1530-1591

Publication Date

January 1, 2013

Start / End Page

559 / 564