Multi-Criteria Analysis of Electric Vans for City Logistics
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Jarosław Wątróbski | Artur Karczmarczyk | Russell G. Thompson | Kinga Kijewska | Krzysztof Małecki | Stanisław Iwan | R. Thompson | S. Iwan | K. Kijewska | Artur Karczmarczyk | J. Wątróbski | K. Małecki
[1] Lori Tavasszy,et al. Towards E(lectric)- urban freight: first promising steps in the electric vehicle revolution , 2013 .
[2] Yanpeng Cai,et al. A hybrid life cycle and multi-criteria decision analysis approach for identifying sustainable development strategies of Beijing's taxi fleet , 2017 .
[3] Massimiliano Avalle,et al. Optibody Project: Optimizing Vehicle Structures for Electric Light Trucks and Vans , 2013 .
[4] H. K. G. Punchihewa,et al. A novel method to measure abrasion of solid tires , 2016, 2016 Moratuwa Engineering Research Conference (MERCon).
[5] Jacqueline M. Bloemhof,et al. The time dependent two echelon capacitated vehicle routing problem with environmental considerations , 2015 .
[6] Marcin Foltyński,et al. Electric Fleets in Urban Logistics , 2014 .
[7] Jutta Geldermann,et al. Modified PROMETHEE approach for assessing energy technologies , 2010 .
[8] Luis C. Dias,et al. Applying Multi-Criteria Decision Analysis to the Life-Cycle Assessment of vehicles , 2015 .
[9] Massoud Pedram,et al. An analytical model for predicting the remaining battery capacity of lithium-ion batteries , 2003, 2003 Design, Automation and Test in Europe Conference and Exhibition.
[10] João Peças Lopes,et al. Electric vehicle integration into modern power networks , 2013 .
[11] K. A. Subramanian,et al. A comprehensive review on utilization of hydrogen in a compression ignition engine under dual fuel mode , 2017 .
[12] Yong Zhang,et al. Multi-Objective Optimization Considering Battery Degradation for a Multi-Mode Power-Split Electric Vehicle , 2017 .
[13] Seibum B. Choi,et al. Engine clutch torque estimation for parallel-type hybrid electric vehicles , 2017 .
[14] Ulrich Eberle,et al. Sustainable transportation based on electric vehicle concepts: a brief overview , 2010 .
[15] Klaus Menrad,et al. Alternative fuel vehicles: preferences, attitudes, and motives of German students in the field of mobility , 2014 .
[16] Guo Sheng Wang,et al. The Performance Analysis of LPG as the Vehicle Fuel , 2012 .
[17] Luis C. Dias,et al. Modelling consumer preferences for electric vehicles in Portugal: an exploratory study , 2015 .
[18] Hajime Akimoto,et al. Characteristics of carbonaceous components in precipitation and atmospheric particle at Japanese sites , 2016 .
[19] Theodor J. Stewart,et al. Multiple Criteria Decision Analysis , 2001 .
[20] Shahzad Faizi,et al. Group Decision-Making for Hesitant Fuzzy Sets Based on Characteristic Objects Method , 2017, Symmetry.
[21] Yukio Nishizawa,et al. Evaluation of Friction Phenomena of Brake Pads by Acoustic Emission Method , 2014 .
[22] Hans Quak,et al. Zero emission city logistics: current practices in freight electromobility and feasibility in the near future , 2016 .
[23] A. Kaufmann,et al. Introduction to fuzzy arithmetic : theory and applications , 1986 .
[24] Madlen Günther,et al. Does this range suit me? Range satisfaction of battery electric vehicle users. , 2017, Applied ergonomics.
[25] Kinga Kijewska,et al. Possibilities of Applying Electrically Powered Vehicles in Urban Freight Transport , 2014 .
[26] Ramesh Chandra Gupta,et al. Abrasion resistance of sustainable green concrete containing waste tire rubber particles , 2016 .
[27] Jairo R. Montoya-Torres,et al. Multi-criteria approaches for urban passenger transport systems: a literature review , 2015, Ann. Oper. Res..
[28] Min Chen,et al. Accurate electrical battery model capable of predicting runtime and I-V performance , 2006, IEEE Transactions on Energy Conversion.
[29] M. Buczaj. Wykorzystanie alternatywnych źródeł zasilania pojazdów w świetle norm i dyrektyw UE na przykładzie Polski , 2006 .
[30] Mamdouh G. Salameh. Oil Crises, Historical Perspective , 2013 .
[31] J.H.R. van Duin,et al. Logistics Concept Development in Multi-Actor Environments , 2012 .
[32] Hans Quak,et al. City Logistics in the European CIVITAS Initiative , 2014 .
[33] Hans Quak,et al. Possibilities and Barriers for Using Electric-powered Vehicles in City Logistics Practice , 2016 .
[34] E Taniguchi,et al. NEW CO-OPERATIVE SYSTEM USING ELECTRIC VANS FOR URBAN FREIGHT TRANSPORT , 2000 .
[35] Miguel A. Figliozzi,et al. Analysis of Competitiveness of Freight Tricycle Delivery Services in Urban Areas , 2014 .
[36] Lele Peng,et al. Two-dimensional nanosheets based Li-ion full batteries with high rate capability and flexibility , 2015 .
[37] Mohammad Reza Soleymani Kermani,et al. THE EFFECT OF A BRASIVE MINERALS ON THE MECHANISM OF ROAD STONES POLISHING , 2016 .
[38] H. Quak. Sustainability of Urban Freight Transport: Retail Distribution and Local Regulations in Cities , 2008 .
[39] Patrícia Baptista,et al. Comparing the Use of Small Sized Electric Vehicles with Diesel Vans on City Logistics , 2014 .
[40] Wenxiang Li,et al. Siting of Carsharing Stations Based on Spatial Multi-Criteria Evaluation: A Case Study of Shanghai EVCARD , 2017 .
[41] Chen-Tung Chen,et al. Extensions of the TOPSIS for group decision-making under fuzzy environment , 2000, Fuzzy Sets Syst..
[42] Katarzyna Cheba,et al. How Local Authorities are Engaged in Implementation of Projects Related to Passenger and Freight Transport in Order to Reduce Environmental Degradation in the City , 2014 .
[43] S French,et al. Multicriteria Methodology for Decision Aiding , 1996 .
[44] Shahzad Faizi,et al. Decision Making with Uncertainty Using Hesitant Fuzzy Sets , 2017, International Journal of Fuzzy Systems.
[45] Huiru Zhao,et al. Optimal Siting of Charging Stations for Electric Vehicles Based on Fuzzy Delphi and Hybrid Multi-Criteria Decision Making Approaches from an Extended Sustainability Perspective , 2016 .
[46] Miguel A. Figliozzi,et al. A Methodology to Evaluate the Competitiveness of Electric Delivery Trucks , 2013 .
[47] Bertrand Mareschal,et al. Prométhée: a new family of outranking methods in multicriteria analysis , 1984 .
[48] Sigal Kaplan,et al. COPE-SMARTER – A decision support system for analysing the challenges, opportunities and policy initiatives: A case study of electric commercial vehicles market diffusion in Denmark , 2016 .
[49] G G Lucas,et al. ALTERNATIVE FUELS FOR TRANSPORTATION , 1982 .
[50] Gwo-Hshiung Tzeng,et al. Compromise solution by MCDM methods: A comparative analysis of VIKOR and TOPSIS , 2004, Eur. J. Oper. Res..
[51] L. Dablanc. Goods transport in large European cities: Difficult to organize, difficult to modernize , 2007 .
[52] Rob Konings,et al. Comparative Analysis of European Examples of Freight Electric Vehicles Schemes - A Systematic Case Study Approach with Examples from Denmark, Germany, the Netherlands, Sweden and the UK , 2014, LDIC.
[53] Adel Guitouni,et al. A Framework to Choose a Discrete Multicriterion Aggregation Procedure ( a ) , 2008 .
[54] P.P.J. van den Bosch,et al. Electronic Horizon: Energy Management using Telematics Information , 2007, 2007 IEEE Vehicle Power and Propulsion Conference.
[55] Klaus-Dieter Thoben,et al. The Influential Factors for Application of the Electric Commercial Vehicle in the Urban Freight Transport , 2014, LDIC.
[56] Dong-Yeon Lee,et al. Electric urban delivery trucks: energy use, greenhouse gas emissions, and cost-effectiveness. , 2013, Environmental science & technology.
[57] T. Crainic,et al. ADVANCED FREIGHT TRANSPORTATION SYSTEMS FOR CONGESTED URBAN AREAS , 2004 .
[58] E. Stanley Lee,et al. An extension of TOPSIS for group decision making , 2007, Math. Comput. Model..
[59] LEBEAU Philippe,et al. THE ELECTRIC VEHICLE AS A VIABLE SOLUTION FOR URBAN FREIGHT TRANSPORT? A TOTAL COST OF OWNERSHIP ANALYSIS , 2014 .
[60] Reza Baradaran Kazemzadeh,et al. PROMETHEE: A comprehensive literature review on methodologies and applications , 2010, Eur. J. Oper. Res..
[61] Erika von Schneidemesser,et al. An Integrated Assessment Method for Sustainable Transport System Planning in a Middle Sized German City , 2015 .
[62] Jesús Muñuzuri,et al. How efficient is city logistics? Estimating ecological footprints for urban freight deliveries , 2010 .
[63] Afida Ayob,et al. Review on Electric Vehicle, Battery Charger, Charging Station and Standards , 2014 .
[64] Toshiyuki Yamamoto,et al. Charge timing choice behavior of battery electric vehicle users , 2015 .
[65] Sebastian Verhelst,et al. Assessment of diesel engine performance when fueled with biodiesel from algae and microalgae: An overview , 2017 .
[66] Philip K. Hopke,et al. Urban air quality in a mid-size city — PM2.5 composition, sources and identification of impact areas: From local to long range contributions , 2017 .
[67] Mariusz Jedliński,et al. The Position of Green Logistics in Sustainable Development of a Smart Green City , 2014 .
[68] Joeri Van Mierlo,et al. Exploring the choice of battery electric vehicles in city logistics: A conjoint-based choice analysis , 2016 .
[69] Kai Strunz,et al. Electric Vehicle Battery Technologies , 2013 .
[70] Norman D. Brinkman. Vehicle evaluation of neat methanol—compromises among exhaust emissions, fuel economy and driveability , 1979 .
[71] Eiichi Taniguchi,et al. City Logistics: Mapping The Future , 2014 .
[72] J. Bloemhof-Ruwaard,et al. Multi-criteria decision making approaches for green supply chains: a review , 2016, Flexible Services and Manufacturing Journal.
[73] Sunyoung Bae,et al. The Aero-geochemistry of Cities and Regions , 2007, Environmental monitoring and assessment.