A Probabilistic Model for Optimal Electric Vehicle Fast Charging Stations Allocation

ُذیکچ : ِهبًزب ُبگتسیا ثاذحا ٍ یشیر ِبٌج سا صربض یبّ ِب یکیزتکلا یبٍّردَخ ِعسَت شزتسگ نْه یبّ یه ربوض ِب ِجَتبب .ذًٍر لوح عیبٌص ٍ ترذق ِکبض لببقته زیثبت ُبگتسیا یحازط ،لقًٍ شٍر يتفزگ زظًرد مشلتسه ،عیزس صربض یبّ ،ىآ بب طبتزه لئبسه ذٌه یگضیٍ ِلوج سا ،کیفازت ِکبض یبّ تیدٍذحه ٍ صربض یبضبقت یه یکیزتکلا ِکبض یبّ ٍ ىبکه يییعت ،زضبح ِلبقه سا فذّ .ذضبب تیفزظ ُبگتسیا ٌِیْب مذع يتفزگ زظًرد بب عیسَت ِکبض رد عیزس صربض یبّ تیعطق یه بّ ِب ،اذتبا رد .ذضبب یبضبقت يییعت رَظٌه زت صیصخت لذه ٍ فص ِیزظً زب یٌتبه یفدبصت لذه ،بٍّردَخ صربض ،سپس .تسا ُذض ُداد ِعسَت زبربک لدبعت یبٌبه زب کیفا ِهبًزب ةَچربچ رد یصزًا تبفلت ٍ تاشیْجت ًِلابس ٌِیشّ ِبٌج .تسا ُذض ٌِیوک یفدبصت یبّذیق بب یشیر بب ِلئسه یتلابوتحا یبّ ِطقً درٍآزب شٍر سا ُدبفتسا ِب یا مازگ یزس ُازوّ .تسا ُذض لح ِیلربض ،يیا زب ٍُلاع لذه بّ یتلابوتحا ِبلغ ی ِب رَظٌه نیوصت ىبٌیوطا مذع طیازض رد یزیگ .تسا ُذض یفزعه ِهبًزب جیبتً ،یدبٌْطیپ دزکیٍر ییاربک ىداد ىبطً تْج یشیر زب یٍر زّ ٍد کیفازت ٍ عیسَت ِکبض ُداد ىبطً تسا ُذض . ،لصبح جیبتً ىبطً ُذٌّد ىآ ا مذع تسردبً درٍآزب ،ِک تس تیعطق بّ شٍر رد یعطق ُار کی ِب تسا يکوه تیدٍذحه ضقً بب یًذضبً لح ددزگ زجٌه نتسیس یبّ . ،ٍُلاعب شٍر بب یتلابوتحا ِبلغ یبّ زظًرد زیثبت يتفزگ مذع تیعطق صخبض زب بّ نیوصت یبّ یزیگ حزط ِعَوجه ِئارا ٍ ٌِیشّ ٍ کسیر زظً سا ةَلغهبً یبّ ، ِیبهزس رد ار راذگ نیوصت زها یه یربی یزیگ ذٌٌک .

[1]  Peng Wang,et al.  Probabilistic estimation of plug-in electric vehicles charging load profile , 2015 .

[2]  T. Koopmans,et al.  Studies in the Economics of Transportation. , 1956 .

[3]  Xiaowen Chu,et al.  Electric Vehicle Charging Station Placement: Formulation, Complexity, and Solutions , 2013, IEEE Transactions on Smart Grid.

[4]  Xiao-Ping Zhang,et al.  Modeling of Plug-in Hybrid Electric Vehicle Charging Demand in Probabilistic Power Flow Calculations , 2012, IEEE Transactions on Smart Grid.

[5]  Fouad Baouche,et al.  Efficient Allocation of Electric Vehicles Charging Stations: Optimization Model and Application to a Dense Urban Network , 2014, IEEE Intelligent Transportation Systems Magazine.

[6]  J.G. Vlachogiannis,et al.  Probabilistic Constrained Load Flow Considering Integration of Wind Power Generation and Electric Vehicles , 2009, IEEE Transactions on Power Systems.

[7]  Samaneh Pazouki,et al.  Simultaneous Planning of PEV Charging Stations and DGs Considering Financial, Technical,and Environmental Effects , 2015, Canadian Journal of Electrical and Computer Engineering.

[8]  Mariz B. Arias,et al.  Prediction of electric vehicle charging-power demand in realistic urban traffic networks , 2017 .

[9]  Zhipeng Liu,et al.  Optimal Planning of Electric-Vehicle Charging Stations in Distribution Systems , 2013, IEEE Transactions on Power Delivery.

[10]  Yan Xu,et al.  A Multi-Objective Collaborative Planning Strategy for Integrated Power Distribution and Electric Vehicle Charging Systems , 2014, IEEE Transactions on Power Systems.

[11]  Enrico Zio,et al.  A method for ranking components importance in presence of epistemic uncertainties , 2009 .

[12]  A. Scaglione,et al.  A Scalable Stochastic Model for the Electricity Demand of Electric and Plug-In Hybrid Vehicles , 2014, IEEE Transactions on Smart Grid.

[13]  Fang He,et al.  Optimal deployment of public charging stations for plug-in hybrid electric vehicles , 2013 .

[14]  Felix F. Wu,et al.  Network Reconfiguration in Distribution Systems for Loss Reduction and Load Balancing , 1989, IEEE Power Engineering Review.

[15]  Jeffrey L. Ringuest,et al.  Probabilistic dominance criteria for comparing uncertain alternatives: A tutorial , 2009 .

[16]  Alexis Kwasinski,et al.  Spatial and Temporal Model of Electric Vehicle Charging Demand , 2012, IEEE Transactions on Smart Grid.

[17]  Kankar Bhattacharya,et al.  Queuing Analysis Based PEV Load Modeling Considering Battery Charging Behavior and Their Impact on Distribution System Operation , 2017, IEEE Transactions on Smart Grid.

[18]  Qiao Sun,et al.  Multi-Objective Planning for Electric Vehicle Charging Stations Considering TOU Price , 2017, 2017 3rd IEEE International Conference on Cybernetics (CYBCON).

[19]  Furong Li,et al.  Economic planning of electric vehicle charging stations considering traffic constraints and load profile templates , 2016 .

[20]  Kit Po Wong,et al.  Traffic-Constrained Multiobjective Planning of Electric-Vehicle Charging Stations , 2013, IEEE Transactions on Power Delivery.

[21]  Rodrigo Garcia-Valle,et al.  Letter to the Editor: Electric Vehicle Demand Model for Load Flow Studies , 2009 .

[22]  J. Morales,et al.  Point Estimate Schemes to Solve the Probabilistic Power Flow , 2007, IEEE Transactions on Power Systems.

[23]  Jianzhong Wu,et al.  Planning of Fast EV Charging Stations on a Round Freeway , 2016, IEEE Transactions on Sustainable Energy.

[24]  Zhipeng Liu,et al.  Optimal Siting and Sizing of Distributed Generators in Distribution Systems Considering Uncertainties , 2011, IEEE Transactions on Power Delivery.