S.M.S.M.HuangS.M.S.M. i inni, Capacitance-based tomographic flow imaging system, „Electron. Lett.”, 7, 24, 1988, s. 418–419, DOI: 10.1049/el:19880283(ang.).
J.J.KryszynJ.J. i inni, Architecture of EVT4 data acquisition system for electrical capacitance tomography, „Measurement”, 101, Elsevier, 2017, s. 28–39, DOI: 10.1016/j.measurement.2017.01.020(ang.).
W.T.W.T.SmolikW.T.W.T. i inni, Single shot high voltage circuit for electrical capacitance tomography, „Measurement Science & Technology”, 28 (2), 2016, s. 1–12, DOI: 10.1088/1361-6501/aa50e1(ang.).
doi.org
D. Wanta, W.T. Smolik, J. Kryszyn, M. Midura i inni. Image reconstruction using Z-axis spatio-temporal sampling in 3D electrical capacitance tomography. „Measurement Science and Technology”. 33 (11), s. 114007, 2022. DOI: 10.1088/1361-6501/ac8220. Bibcode: 2022MeScT..33k4007W.
R. Wajman, P. Fiderek, H. Fidos, T. Jaworski i inni. Metrological evaluation of a 3D electrical capacitance tomography measurement system for two-phase flow fraction determination. „Measurement Science and Technology”. 24 (6), s. 065302, 2013-04-26. IOP Publishing Ltd. DOI: 10.1088/0957-0233/24/6/065302.
Q. Marashdeh, W. Warsito, L.-S. Fan, F.L. Teixeira. A nonlinear image reconstruction technique for ECT using a combined neural network approach. „Meas. Sci. Technol.”. 17 (8), s. 2097–2103, 2006. DOI: 10.1088/0957-0233/17/8/007. Bibcode: 2006MeScT..17.2097M.
harvard.edu
adsabs.harvard.edu
D. Wanta, W.T. Smolik, J. Kryszyn, M. Midura i inni. Image reconstruction using Z-axis spatio-temporal sampling in 3D electrical capacitance tomography. „Measurement Science and Technology”. 33 (11), s. 114007, 2022. DOI: 10.1088/1361-6501/ac8220. Bibcode: 2022MeScT..33k4007W.
Q. Marashdeh, W. Warsito, L.-S. Fan, F.L. Teixeira. A nonlinear image reconstruction technique for ECT using a combined neural network approach. „Meas. Sci. Technol.”. 17 (8), s. 2097–2103, 2006. DOI: 10.1088/0957-0233/17/8/007. Bibcode: 2006MeScT..17.2097M.