Optimal Power Flow Approach for Cognitive and Reliable Operation of Distributed Generation as Smart Grid
- 1 Dr. Babasaheb Ambedkar Technological University, Lonere, India
Abstract
Smart grid expertise emphasises on the compound connections of the electricity to the grid, along with computing, control and communication interface. It will bring together in future smart infrastructure for power system. Investigating these complex dynamic interactions is crucial for the efficiency and robustness of the emerging smart grid. In particular, it is one of the key elements for smart-grids to establish the dynamics among sources of grid. This paper proposes the vital operation of renewable energy sources (RES) like Solar Photovoltaic (PV), wind energy with existing grid of a. c. network of power system in view of cognitive reliable operation of RES as add-on source of power. The research presents sequence of operation of these sources by optimal power flow based on power flow chart for demand side management as a smart grid of power system. The system fulfils realistic operation for power system, based on fundamentals of power system, therefore a necessary research topology is developed, for well-regarded schemes of RES for setting up a pilot model so that demand side load should not be hampered and same is verified for linear and non-linear loads of electrical networks.
- Bolognaise, S., Cavraro, G., Cerruti, F. and Costabeber, A. (2011) A Linear Dynamic Model for Micro Grid Voltages in Presence of Distributed Generation. 2011 IEEE First International Workshop on Smart Grid Modeling, Simulation (SGMS), at IEEE SmartGridComm, 31-36.
- Balenciaga, F. and Puleston, P.F. (2005) Supervisor Control for a Stand-Alone Hybrid Generation System Using Wind and Photovoltaic Energy. IEEE Transaction Energy Conversion, 20, 398-405.
- Jafari, H., Mahmodi, M. and Rastegar, H. (2012) Frequency Control of Micro-Grid in Autonoums Mode Using Predictive Control. 2nd Iranian IEEE Conference on Smart Grid, 1, 231-236.
- Logenthiran, T., Srinivasan, D. and Shun, T.Z. (2012) Demand Side Management in Smart Grid Using Heuristic Optimization. IEEE Transactions on Smart Grid, 3, 1244-1252.
- Erseghe, T. (2014) A Distributed Algorithm for Fast Optimal Power Flow Regulation in Smart Grids. 2014 IEEE International Conference on Smart Grid Communications, 31-36.
- Bugade, V.S. and Katti, P.K. (2015) Dynamic Modelling of Micro grid with Distributed Generation for Grid Integration. 2015 IEEE International Conference on Energy Systems and Applications (ICESA 2015), 30 October-1 November 2015, 102-106.
- Chen, Y.-M., et al. (2007) Multi-Input Inverter for Grid-Connected Hybrid PV/Wind Power System. IEEE Transactions on Power Electronics, 22, 1070-1077.
- Shabestary, S.M.A., Saeedmanesh, M., Rahimi-Kian, A. and Jalalabadi, E. (2012) Real Time Frequency and Voltage Control of Islanded Micro Grid. 2nd Iranian IEEE conference on Smart Grid, 1, 310-315.
- Liu, Y., Zhang, Y., Chen, K.R., Chen, S.Z. and Tang, B. (2016) Equivalence of Multi-Time Scale Optimization for Home Energy Management Considering User Discomfort Preference. IEEE Transactions on Smart Grid, 1, 1-12.
- Wu, D., Tang, F., Dragicevic, T., Vasquez, J.C. and Guerrero, J.M. (2015) A Control Architecture to Coordinate Renewable Energy Sources and Energy Storage Systems in Islanded Micro Grids. IEEE Transactions on Smart Grid, 6, 1156-1166.
- Makhe, A., Bugade, V.S., Matkar, S. and Mothe, P. Digital Protection of LVDC and Integration of Distributed Generation. IEEE International Conference on Energy Efficient Technologies for Sustainability (ICEETS’16).
- Liu, B.Q., Zhou, F., Zhu, Y.X. and Yi, H. (2015) System Operation and Energy Management of a Renewable Energy-Based DC Micro-Grid for High Penetration Depth Application. IEEE Transactions on Smart Grid, 6, 1147-1155.