Page 234 - Decision Making Applications in Modern Power Systems
P. 234

198  Decision Making Applications in Modern Power Systems


            [12] A. von Meier, E. Stewart, A. McEachern, M. Andersen, L. Mehrmanesh, Precision micro-
                synchrophasors for distribution systems: a summary of applications, IEEE Trans. Smart
                Grid 8 (6) (2017) 2926 2936.
            [13] J.H. Eto, E. Stewart, T. Smith, M. Buckner, H. Kirkham, F. Tuffner, et al., Scoping study
                on research and development priorities for distribution-system phasor measurement units,
                2015. Available from: ,https://prod-ng.sandia.gov/techlib-noauth/access-control.cgi/2016/
                163546r.pdf..
            [14] A.K. Pandey, S. Dutta, P.K. Sadhu, M.J.B. Reddy, D.K. Mohanta, Islanding detection
                employing net energy meter signals in a DFIG wind turbine based microgrid, 2019
                International Conference on Computer, Electrical & Communication Engineering
                (ICCECE), IEEE, January 2019 [Accepted].
            [15] S. Verma, S. Dutta, P.K. Sadhu, M.J.B. Reddy, D.K. Mohanta, Islanding detection using
                bi-directional energy meter in a DFIG based active distribution network, 2019
                International Conference on Computer, Electrical & Communication Engineering
                (ICCECE), IEEE, January 2019 [Accepted].
            [16] A.G. Phadke, J.S. Thorp, Synchronized Phasor Measurements and Their Applications, vol.
                1, Springer, New York, 2008.
            [17] E.O. Schweitzer, D. Whitehead, G. Zweigle, K.G. Ravikumar, G. Rzepka, Synchrophasor-
                based power system protection and control applications, Modern Electric Power Systems
                (MEPS), 2010 Proceedings of the International Symposium, IEEE, September 2010,
                pp. 1 10.
            [18] M. Wache, D.C. Murray, Application of synchrophasor measurements for distribution net-
                works, 2011 IEEE Power and Energy Society General Meeting, IEEE, July 2011, pp. 1 4.
            [19] S. Dutta, P.K. Sadhu, M.J.B. Reddy, D.K. Mohanta, Smart inadvertent islanding detection
                employing p-type µPMU for an active distribution network, IET Gener. Transm. Distrib.
                12 (20) (2018) 4615 4625.
            [20] A. Eshraghi, M. Motalleb, E. Reihani, R. Ghorbani, Frequency regulation in islanded
                microgrid using demand response, 2017 North American Power Symposium (NAPS),
                IEEE, September 2017, pp. 1 6.
            [21] S. Skok, K. Frlan, K. Ugarkovic, Detection and protection of distributed generation from
                island operation by using PMUs, Energy Procedia 141 (2017) 438 442.
            [22] A. Borghetti, C.A. Nucci, M. Paolone, G. Ciappi, A. Solari, Synchronized phasors moni-
                toring during the islanding maneuver of an active distribution network, IEEE Trans. Smart
                Grid 2 (1) (2011) 82 91.
            [23] M. Farajollahi, A. Shahsavari, H. Mohsenian-Rad, Location identification of high
                impedance faults using synchronized harmonic phasors, 2017 IEEE Power & Energy
                Society Innovative Smart Grid Technologies Conference (ISGT), IEEE, April 2017,
                pp. 1 5.
            [24] J. Lee, Automatic fault location on distribution networks using synchronized voltage pha-
                sor measurement units, ASME 2014 Power Conference, American Society of Mechanical
                Engineers, July 2014, pp. V002T14A008, 8 pages.
            [25] M. Farajollahi, A. Shahsavari, E. Stewart, H. Mohsenian-Rad, Locating the source of
                events in power distribution systems using micro-PMU data, IEEE Trans. Power Syst. 33
                (6) (2018) 6343 6354.
            [26] R. Rajaram, K.S. Kumar, N. Rajasekar, Power system reconfiguration in a radial distribu-
                tion network for reducing losses and to improve voltage profile using modified plant
                growth simulation algorithm with distributed generation (DG), Energy Rep. 1 (2015)
                116 122.
   229   230   231   232   233   234   235   236   237   238   239