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Micro Water-Energy Nexus: Optimal Demand-Side Management and Quasi-Convex Hull Relaxation.

, , , and . IEEE Trans. Control. Netw. Syst., 6 (4): 1313-1322 (2019)

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Critical slowing-down as indicator of approach to the loss of stability., and . SmartGridComm, page 19-24. IEEE, (2014)Recent Advances in Computational Methods for the Power Flow Equations., , and . CoRR, (2015)Voltage Multistability and Pulse Emergency Control for Distribution System With Power Flow Reversal., and . IEEE Trans. Smart Grid, 6 (6): 2985-2996 (2015)Synchronization stability of lossy and uncertain power grids., and . ACC, page 5056-5061. IEEE, (2015)DistFlow ODE: Modeling, analyzing and controlling long distribution feeder., , and . CDC, page 5613-5618. IEEE, (2012)Towards Plug-and-Play Microgrids., , , , and . IECON, page 4063-4068. IEEE, (2018)A framework for development of universal rules for microgrids stability and control., , , , and . CDC, page 5125-5130. IEEE, (2017)Distributed frequency control in power grids under limited communication., , and . CDC, page 6940-6945. IEEE, (2016)Modeling the impact of communication loss on the power grid under emergency control., , and . SmartGridComm, page 356-361. IEEE, (2015)Statistical Properties and Classification of N-2 Contingencies in Large Scale Power Grids., and . HICSS, page 2517-2526. IEEE Computer Society, (2014)