Author:
Taufik ,Guevara Matthew A.,Shaban Ali,Nafisi Ahmad
Abstract
Microgrids-miniature versions of the electrical grid are becoming increasingly more popular as advancements in technologies, renewable energy mandates, and decreased costs drive communities to adopt them. The modern microgrid has capabilities of generating, distributing, and regulating the flow of electricity, capable of operating in both grid-connected and islanded (disconnected) conditions. This paper utilizes ETAP software in the analysis, simulation, and development of a lab-scale microgrid located at Cal Poly State University. Microprocessor-based relays are heavily utilized in both the ETAP model and hardware implementation of the system. Three case studies were studied and simulated to investigate electric power system load flow analysis of the Cal Poly microgrid. Results were compared against hardware test measurements and showed overall agreement. Slight discrepancies were observed in the simulation results due mainly to the non-ideality of actual hardware components and lab equipment.
Cited by
3 articles.
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1. ETAP-Based Micro-Grid Transmission Coordination;2022 5th International Conference on Contemporary Computing and Informatics (IC3I);2022-12-14
2. Impact of Intermittent Renewable Energy Generations Penetration on Harmonics in Microgrid Distribution Networks;2022 6th International Conference on Electrical, Telecommunication and Computer Engineering (ELTICOM);2022-11-22
3. Micro-Grid Relay Coordination Using ETAP;2022 2nd International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE);2022-04-28