Search Results - "Karpoukhin, Mikhail"

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  1. 1

    Implementation of a PMU-Based EMS System at TNB by Sarmin, M. K. N. M., Saadun, N., Azmi, M. T., Abdullah, S. K. S., Yusuf, N. S. N., Vaiman, Marianna M., Vaiman, Michael Y., Povolotskiy, Mark, Karpoukhin, Mikhail

    “…This paper presents a novel implementation of a PMU-based Energy Management System (EMS) and describes PMU-based linear state estimation (LSE) and its use…”
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    Conference Proceeding
  2. 2

    Quasiperiodicity and chaos in cardiac fibrillation by Garfinkel, A, Chen, P S, Walter, D O, Karagueuzian, H S, Kogan, B, Evans, S J, Karpoukhin, M, Hwang, C, Uchida, T, Gotoh, M, Nwasokwa, O, Sager, P, Weiss, J N

    Published in The Journal of clinical investigation (15-01-1997)
    “…In cardiac fibrillation, disorganized waves of electrical activity meander through the heart, and coherent contractile function is lost. We studied…”
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    Journal Article
  3. 3

    PMU-Based Distribution Linear State Estimation to Improve Data Quality and Application Reliability by Pandey, Shikhar, Chen, Heng Kevin, Paaso, Esa A., Rahmatian, Farnoosh, Vaiman, Michael Y., Vaiman, Marianna M., Povolotskiy, Mark, Karpoukhin, Mikhail

    “…Synchrophasor data quality issues have been a challenge for robust application deployment in the power grid. This paper presents the ability of a three-phase…”
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    Conference Proceeding
  4. 4
  5. 5

    Excitation wave front transients: a computer simulation study by Kogan, B.Y., Karplus, W.J., Billett, B.S., Karpoukhin, M.G.

    “…The propagation of excitation waves in narrow pathways of 2-D excitable media through regions of impermeable and decreased excitability is investigated as a…”
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    Conference Proceeding Journal Article
  6. 6

    A mathematical model of cardiac action potential: Application to wave propagation by Karpoukhin, Mikhail

    Published 01-01-1996
    “…Heart fibrillation, the main reason for sudden cardiac death, can be studied on the computer using mathematical models of action potential propagation. Full…”
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    Dissertation
  7. 7

    Excitation wave front transients: a computer simulation study by Kogan, Boris Y, Karplus, Walter J, Billett, Brian S, Karpoukhin, Mikhail G

    “…The propagation of excitation waves in narrow pathways of 2-D excitable media through regions of impermeable and decreased excitability is investigated as a…”
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    Conference Proceeding