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[3] M. Cupelli, M. de Paz Carro, A. Monti, Hardware in the Loop implementation of a
disturbance based control in MVDC grids, in: 2015 IEEE Power & Energy Society
General Meeting, Denver, CO, 2015, pp. 1 5.
[4] N. Doerry, Naval Power Systems: integrated power systems for the continuity of the
electrical power supply, IEEE Electrif. Mag. 3 (2) (June 2015) 12 21.
[5] IEEE Recommended Practice for 1 kV to 35 kV Medium-Voltage DC Power
Systems on Ships,” IEEE Std. 1709-2010, pp. 1, 54, Nov. 2 2010.
[6] S.D. Sudhoff, S.F. Glover, S.H. Zak, S.D. Pekarek, E.J. Zivi, D.E. Delisle, D.
Clayton, Stability analysis methodologies for DC power distribution systems, in:
13th Int. Ship Control Systems Symposium (SCSS), Orlando, Florida, April 2003.
[7] A. Riccobono, E. Santi, Comprehensive review of stability criteria for DC power
distribution systems, IEEE Trans. Ind. Appl. 50 (5) (Sept.-Oct. 2014) 3525 3535.
[8] J.O. Flower, C.G. Hodge, Stability and transient-behavioral assessment of power-
electronics based dc-distribution systems, Part 1:the root-locus technique, in: 1st
WSEAS Int. Sub-Conference on Electroscience and Technology for Naval
Engineering and All Electric Ship, Athens, Greece, July 2004.
[9] S.F. Glover, S.D. Sudhoff, An experimentally validated nonlinear stabilizing control
for power electronics based power systems, SAE 981255, 1998.
[10] T.L. Vandoorn, et al., Power balancing in islanded microgrids by using a dc-bus volt-
age reference, in: Proc. Int. Symp. Power Electron. Electrical Drives Automation,
Motion (SPEEDAM), 2010, pp. 884 889.
FURTHER READING
K. Ogata, Modern Control Engineering, Prentice Hall, 2010.
T. Ericsen, Advanced electrical power systems (AEPS) thrust at the office of naval
research, 2003 IEEE Power Engineering Society General Meeting, 2003.
V.N. Chuvychin, N.S. Gurov, S.S. Venkata, R.E. Brown, An adaptive approach to load
shedding and spinning reserve control during underfrequency conditions, IEEE Trans.
Power Systems 11 (4) (Nov. 1995) 1805 1810.
H. Seyedi, M. Sanaye-Pasand, New centralised adaptive load-shedding algorithms to mitigate
power system blackouts, IET Gen. Trans. Distrib. 3 (1) (January 2009) pp. 99 114.
D. Zhiping, S.K. Srivastava, D.A. Cartes, S. Suryanarayanan, Dynamic simulation based
analysis of a new load shedding scheme for a Notional Destroyer Class Shipboard
Power System, in: IEEE Electric Ship Technologies Symposium, 2007. ESTS ‘07.
pp. 95, 102, 21 23 May 2007.