Page 221 - Hybrid-Renewable Energy Systems in Microgrids
P. 221

Smart grid and power quality issues                               201

            [7] E. Paál, Z. Tatai, Grid connected inverters influence on power quality of smart grid, in:
               Power Electronics and Motion Control Conference (EPE/PEMC). IEEE 14th International,
               2010, pp. T6–T35.
            [8] D. Kumar, F. Zare, A. Ghosh, DC Microgrid Technology: System Architectures, AC Grid
               Interfaces, Grounding Schemes, Power Quality, Communication Networks, Applications
               and Standardizations Aspects, IEEE, 2017.
            [9] Justo, J.J., Mwasilu, F., Lee, J., Jung, J.W., 2013. AC-microgrids versus DC-microgrids
               with distributed energy resources: a review. Renew. Sust. Energy Rev. 24, 387–405.
           [10] Chen, D., Xu, L.AC., 2017. DC microgrid with distributed energy resources. Technologies
               and Applications for Smart Charging of Electric and Plug-in Hybrid Vehicles. Springer
               International Publishing, New York, 39–64.
           [11] Shuai, Z., Sun, Y., Shen, Z.J., Tian, W., Tu, C., Li, Y., Yin, X., 2016. Microgrid stability:
               classification and a review. Renew. Sust. Energy Rev. 58, 167–179.
           [12] Bollen, M., Olofsson, M., Larsson, A., Rönnberg, S., Lundmark, M., 2014. Standards for
               supraharmonics (2 to 150 kHz). IEEE Electromagn. Compat. Mag. 3 (1), 114–119.
           [13] Wang, X., Guerrero, J.M., Blaabjerg, F., Chen, Z., 2012. A review of power electronics
               based microgrids. J. Power Electr. 12 (1), 181–192.
           [14] Malysz, P., Sirouspour, S., Emadi, A., 2014. An optimal energy storage control strategy for
               grid-connected microgrids. IEEE Trans. Smart Grid. 5 (4), 1785–1796.
           [15] Whaite, S., Grainger, B., Kwasinski, A., 2015. Power quality in DC power distribution
               systems and microgrids. Energies 8 (5), 4378–4399.
           [16] K. Asakimori, K. Murai, T. Tanaka, T. Babasaki, Effect of inrush current flowing into EMI
               filter on the operation of ICT equipment in HVDC system, in: IEEE 36th International
               Telecommunications Energy Conference (INTELEC), 2014, pp. 1–5.
           [17]  Backhaus, S.N., Swift, G.W., Chatzivasileiadis, S., Tschudi, W., Glover, S., Starke, M., Wang,
               J., Yue, M., Hammerstrom, D., 2015. DC microgrids scoping study. Estimate of Technical and
               Economic Benefits. Los Alamos National Lab, (LANL), Los Alamos NM (United States).
           [18] Bollen, M.H., Das, R., Djokic, S., Ciufo, P., Meyer, J., Rönnberg, S.K., Zavodam, F., 2017.
               Power quality concerns in implementing smart distribution-grid applications. IEEE Trans.
               Smart Grid 8 (1), 391–399.
           [19] F.Z. Peng, Flexible AC transmission systems (FACTS) and resilient AC distribution sys-
               tems (RACDS), in: Smart Grid Proceedings of the IEEE, 2017
           [20] La Scala, M., Bruno, S., Nucci, CA., Lamonaca, S, Stecchi, U., 2017. From Smart Grids to
               Smart Cities. New Challenges in Optimizing Energy Grids. John Wiley & Sons.
           [21] Kadurek, P., Cobben, J.F., Kling, W.L., Ribeiro, P.F., 2014. Aiding power system support
               by means of voltage control with intelligent distribution substation. IEEE Trans. Smart
               Grid 5 (1), 84–91.
           [22] F. Zavoda, C. Perreault, A. Lemire, The impact of a volt & var control system (VVC) on
               PQ and customer's equipment, in: IEEE Transmission and Distribution Conference and
               Exposition, 2010, pp. 1–6.
           [23] A.T. Procopiou, C. Long, L.F. Ochoa, On the effects of monitoring and control settings
               on voltage control in PV-rich LV networks, in: IEEE Power and Energy Society General
               Meeting, 2015, pp. 1–5.
           [24] K.V. Suslov, N.N. Solonina, A.S. Smirnov, Smart meters for distributed filtering of high
               harmonics in smart grid, in: IEEE International Conference on Power Engineering, Energy
               and Electrical Drives (POWERENG), 2011, pp. 1–5.
           [25] M.A. Masoum, S. Deilami, S. Islam, Mitigation of harmonics in smart grids with high pen-
               etration of plug-in electric vehicles, in: IEEE Power and Energy Society General Meeting,
               2010, pp. 1–6.
   216   217   218   219   220   221   222   223   224   225   226