OPTIMAL ALLOCATION OF DISTRIBUTED GENERATORS INTO SEVERAL ELECTRICAL NETWORKS BASED ON DG TYPES

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dc.contributor.author SHAROZE SOHAIL, 01-244192-012
dc.date.accessioned 2022-12-27T09:19:10Z
dc.date.available 2022-12-27T09:19:10Z
dc.date.issued 2021
dc.identifier.uri http://hdl.handle.net/123456789/14565
dc.description Supervised by Dr. Asad Waqar en_US
dc.description.abstract The increase in day-by-day load demand, the distribution systems catch attention to get enhanced and improved from last past years. The Voltage drop and Power Losses can be minimized by the (DGs) optimal allocation in the network. Therefore, present day thesis investigates the ultimate DGs poisoning in distributed structures with an intention to concurrently power losses which can be active and reactive energy losses and voltage drop. A submit deployment monetary evaluation is completed to decide the profitability of positioning DGs with inside the distribution network. Harris Hawk Optimization (HHO) set of rules is proposed to remedy the taken into consideration multi-goal problem. The effects of the proposed HHO set of rules are in comparison with (ABC) and (GA). Newton Raphson load flow (NRLF) evaluation with the counselled HHO set of rules is performed on IEEE 16 ,33 and 69 bus radial distribution system. The new method for the seasonal load is consider in HHO Algorithm and see that which seasons has less power losses. Different test cases consisting of different stages have been formed andinvestigated. Single, Multiple combination of DGs is considered in different stages. This result proves that single and multiple combination of DGs substantially reduce the Voltage drops and Power Losses. The outcome shows that proposed HHO set of rules outperforms different algorithms. en_US
dc.language.iso en en_US
dc.publisher Electrical Engineering, Bahria University Engineering School Islamabad en_US
dc.relation.ispartofseries MS(EE);T-1873
dc.subject Electrical Engineering en_US
dc.title OPTIMAL ALLOCATION OF DISTRIBUTED GENERATORS INTO SEVERAL ELECTRICAL NETWORKS BASED ON DG TYPES en_US
dc.type MS Thesis en_US


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