Title
Power Conditioning Of Distribution Networks Via Single-Phase Electric Vehicles Equipped
Abstract
This paper presents the design of a single-phase electric vehicle (EV) on-board bidirectional charger with the capability of power conditioning. This charger can control its charging/discharging active power based on the demand of EV battery/network or load. Also, it controls reactive power and harmonic current based on the characteristics of the nonlinear and linear loads. The topology of the proposed charger consists of the bidirectional ac/dc and buck-boost dc/dc converters, where it can operate in four quadrants in the active-reactive power plane with the capability of harmonic compensation. In the next step, this paper presents a suitable control strategy for the bidirectional charger according to the instantaneous active and reactive power (PQ) theory. Based on the PQ theory, the active and reactive power that includes average and oscillatory components obtained, based on the demand of nonlinear/linear loads and EV battery. Then, the reference current of ac/dc converter of the charger and battery is obtained, and in the next step, the situation of the charger switches is determined using output signals of the proportional-integral and proportional-resonant controllers and putsewidth modulation. Finally, the proposed approach is validated and implemented in the OPAL-RT to integrate the fidelity of the physical simulation and the flexibility of the numerical simulations.
Year
DOI
Venue
2019
10.1109/JSYST.2019.2896408
IEEE SYSTEMS JOURNAL
Keywords
Field
DocType
Active and reactive power control, bidirectional charger, electric vehicles (EVs), harmonic compensation, power conditioning, three-phase instantaneous active and reactive power (PQ) theory
Nonlinear system,Electric vehicle,Computer science,Pulse-width modulation,Harmonic,AC power,Converters,Real-time computing,Harmonic analysis,Battery (electricity),Electrical engineering
Journal
Volume
Issue
ISSN
13
3
1932-8184
Citations 
PageRank 
References 
0
0.34
0
Authors
8
Name
Order
Citations
PageRank
Sasan Pirouzi111.03
Jamshid Aghaei25419.74
Taher Niknam342332.02
Mohammad Hassan Khooban414230.21
Tomislav Dragicevic514325.60
Hossein Farahmand622.02
Magnus Korpas711.73
Frede Blaabjerg81195248.32