Mathematical Model of Reverse Loading Advisability for Trucks Considering Idle Times
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[1] Dmitriy Muzylyov,et al. Forecasting of Overloading Volumes in Transport Systems Based on the Fuzzy-Neural Model , 2019 .
[2] Thomas Volling,et al. Multi-item single-source ordering with detailed consideration of transportation capacities , 2018 .
[3] Dmitriy Muzylyov,et al. Development of a methodology for choosing conditions of interaction between harvesting and transport complexes , 2016 .
[4] Ralf Fritzsche. Damage to Wheel Bearings during Car Transportation on a Truck , 2019 .
[5] Frederik Schulte,et al. Reducing Port-Related Truck Emissions: Coordinated Truck Appointments to Reduce Empty Truck Trips , 2015, ICCL.
[6] Kjetil Fagerholt,et al. A Vessel Pickup and Delivery Problem from the Disruption Management in Offshore Supply Vessel Operations , 2016, ICCL.
[7] Tan Miller. Distribution And Transportation Planning And Scheduling , 2002 .
[8] Dmitriy Muzylyov,et al. Information and Communication Technology: Case of Using Petri Nets for Grain Delivery Simulation at Logistics System , 2019, CMIS.
[10] John Tookey,et al. Evaluating Truck Empty Running in Construction: A Case Study from Cape Town, South Africa , 2012 .
[11] Alain Martel,et al. Designing Value-Creating Supply Chain Networks , 2016 .
[12] Patrick Miller,et al. Public transportation and sustainability: A review , 2016 .
[13] N. Shramenko,et al. Methodology of costs assessment for customer transportation service of small perishable cargoes , 2020, International Journal of Business Performance Management.
[14] Daqing Gong,et al. Eliminating Overload Trucking via a Modal Shift to Achieve Intercity Freight Sustainability: A System Dynamics Approach , 2017 .
[15] Alejandro Rosete,et al. Fuzzy constraints in the Truck and Trailer Routing Problem , 2013 .
[16] N. Jawahar,et al. Solving fixed charge transportation problem with truck load constraint using metaheuristics , 2019, Ann. Oper. Res..
[17] N. Shramenko,et al. Integrated business-criterion to choose a rational supply chain for perishable agricultural goods at automobile transportations , 2020, International Journal of Business Performance Management.
[18] N. Y. Shramenko,et al. Optimization of technological specifications and methodology of estimating the efficiency of the bulk cargoes delivery process , 2019 .
[19] A. McKinnon. The possible influence of the shipper on carbon emissions from deep-sea container supply chains: An empirical analysis , 2014 .
[20] Tolga Bektaş,et al. Sustainability SI: Multimode Multicommodity Network Design Model for Intermodal Freight Transportation with Transfer and Emission Costs , 2016 .
[21] A. Martel,et al. Transportation in the Supply Chain , 2016 .
[22] Alan C. McKinnon,et al. The potential for reducing empty running by trucks: a retrospective analysis , 2006 .
[23] Dong Mu,et al. Evaluating sustainability of truck weight regulations: A system dynamics view , 2015 .
[24] Olexiy Pavlenko,et al. The Choice of Rational Technology of Delivery of Grain Cargoes in the Containers in the International Traffic , 2017 .
[25] O. V. Fomin,et al. Logistic technology to deliver raw material for metallurgical production , 2018 .
[26] Tarek Atalla,et al. Energy project financing in the GCC region: an empirical investigation , 2019, Energy Transitions.
[27] Sheng Li,et al. Integrating fluctuations into distribution of resources in transportation networks , 2009, 0906.0844.
[28] N. Shramenko. Mathematical model of the logistics chain for the delivery of bulk cargo by rail transport , 2018 .
[29] A. Hrynkiv,et al. Realization of the Logistic Approach in the International Cargo Delivery System , 2019, Communications - Scientific letters of the University of Zilina.
[30] F. Ascensão,et al. Aliens on the Move: Transportation Networks and Non-native Species , 2017 .