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In this paper, optimal DG sizing and siting has been obtained considering three objectives i.e. active power loss index (APLI), line loading index (LLI) and voltage deviation index (VDI). Multiple objective NSGA-II method along with fuzzy satisfying method (FSM) has been used to solve multiple objective optimization problem. Probabilistic load model has been considered in this study. A two point estimate...
Biodiesel, as a substitute for diesel has been getting the attention of researchers/scientists of all over the world. The R & D has indicated that up to B20, there is no need of modification and little work is available related to suitability and sustainability of biodiesel production from Jatropha and algae as non-edible oil sources. The objective of the present study was to optimize the process...
Distributed generation integration in the distribution system is a challenging issue in context of optimal placement of DG and improvements in the system operation in terms of losses reduction and voltage profile improvement. In this paper, The main objective of the paper is: (i) finding out the optimal DG location and size using various techniques at unity and 0.9 pf lag, (ii) calculation of total...
The efficient use of Renewable Energy Systems as DG's in the distribution sector requires that the losses, arising out due to their existence in the system, to be minimum. This can be achieved by placing a properly sized DG at an optimal location in the system. Using an optimization technique is one method to solve such a purpose. In this paper, optimal DG placement and sizing has been presented using...
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