Abstract

This paper proposes the impact of plug-in electric vehicles (PEVs) integrated into a power distribution system based on voltage-dependent control. The gasolinegate situation has many people turning to electric vehicles as a more environmentally friendly option, especially in smart community areas. The advantage of PEVs is modern vehicles that can use several types of fuel cells and batteries as energy sources. The proposed PEVs model was developed as a static load model in power distribution systems under balanced load conditions. The power flow analysis was determined by using certain parameters of the proposed electrical network. The main research objective was to determine the voltage magnitude profiles, the load voltage deviation, and total power losses of the electrical power system by using the new proposed methodology. Furthermore, it investigated the effects of the constant power load, the constant current load, the constant impedance load, and the plug-in electric vehicles load model. The IEEE 33 bus system was selected as the test system. The proposed methodology assigned the balanced load types in a steady state condition and used the new methodology to solve the power flow problem. The simulation results showed that increasing the plug-in electric vehicles load had an impact on the grids when compared with the other four load types. The lowest increased value for the plug-in electric vehicles load had an effect on the load voltage deviation (0.062), the total active power loss (120 kW) and the total reactive power loss (80 kVar), respectively. Therefore, this study verified that the load of PEVs can affect the electrical power system according to the time charging and charger position. Therefore, future work could examine the difference caused when PEVs are attached to the electrical power system by means of the conventional or complex load type.

Highlights

  • The transportation sector has become one of the main areas of energy consumption and has had a high impact on electrical power source sectors

  • This article analyzed the impact of plug-in electric vehicles (PEVs) based on a voltage-dependent power flow analysis

  • This study shows the static voltage stability on the proposed PEVs integrated into the electrical power system using the new load flow study (LF) methodology

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Summary

Introduction

The transportation sector has become one of the main areas of energy consumption and has had a high impact on electrical power source sectors. Fast charging station in urban dwelling areas can be impacted by the electrical power system under conditions of voltage drop, transmission line loading, transformer loading, peak demand, and increase of total power loss [21,22]. There are defined based on the type of PEVs, battery size, electric motor/engine, range of electric driving, and charging rate of charger. Many researchers have studied and found the impact of the PEVs on the electrical power system network as discussed in previous paragraphs, but they did not clarify and consider the actual behavior of the PEVs under voltage-dependent power flow analysis For this reason, this article is going to investigate the PEVs load model based on the exponential load characteristics by considering the static load base.

Proposed Load Flow Study and Formulation
Static Load Model
Total Power Loss of Electrical Power System
Simulation Results
Conclusions
Full Text
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