Application of Grade Algorithm Based Approach along with PV Analysis for Enhancement of Power System Performance
- 1 Department of Electrical and Electronics Engineering, Amet University, Chennai, India
- 2 Sri Muthukumaran Institute of Technology, Chennai, India
- 3 Department of Electrical and Electronics Engineering, Anand Institute of Higher Technology, Chennai, India
Abstract
This paper presents an application of GRADE Algorithm based approach along with PV analysis to solve multi objective optimization problem of minimizing real power losses, improving the voltage profile and hence enhancing the performance of power system. GRADE Algorithm is a hybrid technique combining genetic and differential evolution algorithms. Control variables considered are Generator bus voltages, MVAR at capacitor banks, transformer tap settings and reactive power generation at generator buses. The optimal values of the control variables are obtained by solving the multi objective optimization problem using GRADE Algorithm programmed using M coding in MATLAB platform. With the optimal setting for the control variables, Newton Raphson based power flow is performed for two test systems, viz, IEEE 30 bus system and IEEE 57 bus system for three loading conditions. Minimization of Real power loss and improvement of voltage profile obtained are compared with the results obtained using firefly and particle swarm optimization (PSO) techniques. Improvement of Loadability margin is established through PV curve plotted using continuation power flow with the real power load at the most affected bus as the bifurcation parameter. The simulated output shows improved results when compared to that of firefly and PSO techniques, in term of convergence time, reduction of real power loss, improvement of voltage profile and enhancement of loadability margin.
- Abou El Ela, A.A., Abido, M.A. and Spea, S.R. (2011) Differential Evolution Algorithm for Optimal Reactive Power Dispatch. Electric Power Systems Research, 81, 458-464.
- Khazali, A.H. and Kalantar, M. (2011) Optimal Reactive Power Dispatch Based on Harmony Search Algorithm. International Journal of Electrical Power & Energy Systems, 33, 684-692.
- Saraswat, A. and Saini, A. (2013) Multi-Objective Optimal Reactive Power Dispatch Considering Voltage Stability in Power Systems Using HFMOEA. Engineering Applications of Artificial Intelligence, 26, 390-404.
- Bhattacharya, A. and Chattopadhyay, P.K. (2010) Solution of Optimal Reactive Power Flow Using Biogeography-Based Optimization. International Journal of Electrical & Electronics Engineering, 4, 8.
- Shunmugalatha, A. and Slochanal, S.M.R. (2008) Application of Hybrid Multiagent-Based Particle Swarm Optimization to Optimal Reactive Power Dispatch. Electric Power Components and Systems, 36, 788-800.
- Mandal, B. and Roy, P.K. (2013) Optimal Reactive Power Dispatch Using Quasi-Oppositional Teaching Learning Based Optimization. International Journal of Electrical Power & Energy Systems, 53, 123-134.
- Bhattacharya, B. and Goswami, S.K. (2007) Reactive Power Optimization through Evolutionary Techniques. A Comparative Study of the GA, DE and PSO Algorithms. Intelligent Automation and Soft Computing, 13, 453-461.
- Bhagwan Das, D. and Patvardhan, C. (2002) Reactive Power Dispatch with a Hybrid Stochastic Search Technique. International Journal of Electrical Power & Energy Systems, 24, 731-736.
- Devaraj, D. and Roselyn. J.P. (2010) Genetic Algorithm Based Reactive Power Dispatch for Voltage Stability Improvement. International Journal of Electrical Power & Energy Systems, 32, 1151-1156.
- Saadat, H. (2004) Power System Analysis. McGraw-Hill Publications.
- Ramirez, J.M., Gonzalez, J.M. and Ruben, T.O. (2011) An Investigation about the Impact of the Optimal Reactive Power Dispatch Solved by DE. International Journal of Electrical Power & Energy Systems, 33, 236-244.
- Devaraj, D. (2007) Improved Genetic Algorithm for Multi Objective Reactive Power Dispatch Problem. European Trans- action on Electrical Power, 17, 569-581.
- Lenin, K. and Mohan, M.R. (2006) Ant Colony Search Algorithm for Optimal reactive Power Optimization. Serbian Journal of Electrical Engineering, 3, 77-88.