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"Voltage Stability Analysis of Grid-Connected Microgrid Incorporating P" by Ahmed M. Omara, Alyaa A. Shalabi et al.

Plug-in electric vehicles (PEVs) will rapidly receive much more attention as a global transportation facility. Although PEVs have an environmental advantage, the charging/discharging process may cause many challenges for the electric power utilities. Therefore, it is crucial to study and analyze the influence of connecting PEVs on power distribution systems. For instance, microgrids can effectively integrate PEVs alongside distributed generators (DGs), control systems, protection devices, energy storage systems, and various load types. Consequently, microgrids can benefit from the charging/discharging process of PEVs. This paper presents a complete model of grid-connected microgrid combining micro wind turbine generator (MWTG), photovoltaic arrays (PV), and PEVs. The aim is to study the impact of PEVs charging/discharging process on the voltage stability of the microgrid. For this purpose, electric transient analyzer program (ETAP) is employed as the computer simulation platform. Vario ....

Distributed Generation Dg , Lectric Transient Analyzer Program Etap Introduction , Icrogrids Mgs , Lug In Electric Vehicles Pevs ,

"Probabilistic load flow–based optimal placement and sizing of distribu" by Ferdous Al Hossain, Md Rokonuzzaman et al.

Distributed generation (DG) is gaining importance as electrical energy demand increases. DG is used to decrease power losses, operating costs, and improve voltage stability. Most DG resources have less environmental impact. In a particular region, the sizing and location of DG resources significantly affect the planned DG integrated distribution network (DN). The voltage profiles of the DN will change or even become excessively increased. An enormous DG active power, inserted into an improper node of the distribution network, may bring a larger current greater than the conductor’s maximum value, resulting in an overcurrent distribution network. Therefore, DG sizing and DG location optimization is required for a systematic DG operation to fully exploit distributed energy and achieve mutual energy harmony across existing distribution networks, which creates an economically viable, secure, stable, and dependable power distribution system. DG needs to access the location and capacity for ....

Distributed Generation Dg , Istribution Network Dn , Location Optimization , Robabilistic Load Flow Plf ,