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Different Droop Control-Based PV-Wind-Hydro Grid-Connected Microgrid Under Different Load Variations and EV Charging Point Using Different Dispatch Technique and Derivative-Free Algorithm
Conference proceeding

Different Droop Control-Based PV-Wind-Hydro Grid-Connected Microgrid Under Different Load Variations and EV Charging Point Using Different Dispatch Technique and Derivative-Free Algorithm

Md. Fatin Ishraque, Sk. A. Shezan and G M Shafiullah
2023 International Conference on Sustainable Technology and Engineering (i-COSTE)
2023 International Conference on Sustainable Technology and Engineering (i-COSTE) (Nadi, Fiji, 04/12/2023–06/12/2023)
2023

Abstract

constant IQ droop controller Constant Q controller Costs derivative free algorithm dispatch strategy Hybrid power systems microgrid Microgrids Power system stability Reactive power Stability analysis voltage Q droop controller Wind turbines
This research work presents the comparative study of the performance of constant IQ droop, Constant Q and voltage Q droop controller on a dispatch controlled optimized hybrid grid tied microgrid system having electrical, industrial and EV (electric vehicle) loads. The optimized configuration of the microgrid on top of load following (LF) and cycle charging (CC) dispatch methods have been determined using a propri-etary derivative free algorithm and their voltage, active power, frequency and reactive powers have been evaluated for the three different control strategies. For the planned microgrid, it has been determined through the analysis in the proposed location, the two dispatch strategies offer similar optimization results and constant IQ droop control offers slightly better performance among the others. The results demonstrate the feasibility of the microgrid system with the proposed controller and operating strategy.

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UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#7 Affordable and Clean Energy

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