Voltage-Based Droop Control of Electric Vehicles in Distribution Grids under Different Charging Power Levels

被引:11
作者
Ireshika, Muhandiram Arachchige Subodha Tharangi [1 ,2 ,3 ]
Lliuyacc-Blas, Ruben [1 ,2 ]
Kepplinger, Peter [1 ,3 ]
机构
[1] Vorarlberg Univ Appl Sci, Energy Res Ctr, Illwerke Vkw Endowed Professorship Energy Efficie, A-6850 Dornbirn, Austria
[2] Univ Agder, Fac Sci & Engn, N-4879 Grimstad, Norway
[3] Vorarlberg Univ Appl Sci, Josef Ressel Ctr Appl Sci Comp Energy Finance & L, A-6850 Dornbirn, Austria
关键词
electric vehicles; demand response; demand side management; voltage-based droop control; distribution grids; voltage violations; DISTRIBUTION NETWORKS; INTEGRATION; IMPACT;
D O I
10.3390/en14133905
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
If left uncontrolled, electric vehicle charging poses severe challenges to distribution grid operation. Resulting issues are expected to be mitigated by charging control. In particular, voltage-based charging control, by relying only on the local measurements of voltage at the point of connection, provides an autonomous communication-free solution. The controller, attached to the charging equipment, compares the measured voltage to a reference voltage and adapts the charging power using a droop control characteristic. We present a systematic study of the voltage-based droop control method for electric vehicles to establish the usability of the method for all the currently available residential electric vehicle charging possibilities considering a wide range of electric vehicle penetrations. Voltage limits are evaluated according to the international standard EN50160, using long-term load flow simulations based on a real distribution grid topology and real load profiles. The results achieved show that the voltage-based droop controller is able to mitigate the under voltage problems completely in distribution grids in cases either deploying low charging power levels or exhibiting low penetration rates. For high charging rates and high penetrations, the control mechanism improves the overall voltage profile, but it does not remedy the under voltage problems completely. The evaluation also shows the controller's ability to reduce the peak power at the transformer and indicates the impact it has on users due to the reduction in the average charging rates. The outcomes of the paper provide the distribution grid operators an insight on the voltage-based droop control mechanism for the future grid planning and investments.
引用
收藏
页数:12
相关论文
共 26 条
[1]   A Voltage-Based Controller for an Electric-Vehicle Charger [J].
Al-Awami, Ali T. ;
Sortomme, Eric ;
Akhtar, Ghous Muhammad Asim ;
Faddel, Samy .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2016, 65 (06) :4185-4196
[2]  
Alvarez J, 2016, AEROSP CONF PROC
[3]   A review of EVs charging: From the perspective of energy optimization, optimization approaches, and charging techniques [J].
Amjad, Muhammad ;
Ahmad, Ayaz ;
Rehmani, Mubashir Husain ;
Umer, Tariq .
TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2018, 62 :386-417
[4]  
[Anonymous], NISSAN LEAF DATA SHE
[5]  
[Anonymous], SYNTHETIC LOAD PROFI
[6]   Load shift potential of electric vehicles in Europe [J].
Babrowski, Sonja ;
Heinrichs, Heidi ;
Jochem, Patrick ;
Fichtner, Wolf .
JOURNAL OF POWER SOURCES, 2014, 255 :283-293
[7]  
CENELEC, 2010, EN50160 CENELEC GERM
[8]  
Clement K, 2009, 2009 IEEE/PES POWER SYSTEMS CONFERENCE AND EXPOSITION, VOLS 1-3, P1483
[9]   Charge Control and Operation of Electric Vehicles in Power Grids: A Review [J].
Faddel, Samy ;
Al-Awami, Ali T. ;
Mohammed, Osama A. .
ENERGIES, 2018, 11 (04)
[10]   Plug-in electric vehicles in electric distribution networks: A review of smart charging approaches [J].
Garcia-Villalobos, J. ;
Zamora, I. ;
San Martin, J. I. ;
Asensio, F. J. ;
Aperribay, V. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2014, 38 :717-731