A new closed-loop supply chain logistics network of vehicle routing problem with simultaneous pickups and deliveries (VRPSPD) dominated by remanufacturer is constructed, in which the customers are originally divided into three types: distributors, recyclers, and suppliers. Furthermore, the fuel consumption is originally added to the optimization objectives of the proposed VRPSPD. In addition, a bee evolutionary algorithm guiding nondominated sorting genetic algorithm II (BEG-NSGA-II) with a two-stage optimization mechanism is originally designed to solve the proposed VRPSPD model with three optimization objectives: minimum fuel consumption, minimum waiting time, and the shortest delivery distance. The proposed BEG-NSGA-II could conquer the ...
Abstract — A key element of many distribution systems is the routing and scheduling of vehicles thro...
This paper proposes a formulation of the vehicle routing problem with simultaneous pickup and delive...
Abstract — This paper presents a multiple objective genetic algorithm for multi depot vehicle routin...
One of the well-known and highly used extensions of vehicle routing problem (VRP) is Vehicle Routing...
The vehicle routing problem with simultaneous pick-up and deliveries, which considers simultaneous d...
The VRP is a well-known combinatorial optimization problem in transport and logistics distribution. ...
The vehicle routing problem with simultaneous pick-up and deliveries, which considers simultaneous d...
The demand of distribution and reverse logistics is drastically increasing. In order to absorb custo...
The distribution of finished products from depots to customers is a practical and challenging proble...
Abstract: This paper presents a genetic algorithm for multi capacitated depot vehicle routing proble...
With advanced information technologies and industrial intelligence, Industry 4.0 has been witnessing...
Resource sharing (RS) integrated into the optimization of multi-depot pickup and delivery problem (M...
In the field of supply chain management and logistics, using vehicles to deliver products from suppl...
Summarization: Artificial Bee Colony algorithm is a very powerful Swarm Intelligence Algorithm that ...
Graduation date: 2011For manufacturing and service industries to stay competitive in this rapidly ch...
Abstract — A key element of many distribution systems is the routing and scheduling of vehicles thro...
This paper proposes a formulation of the vehicle routing problem with simultaneous pickup and delive...
Abstract — This paper presents a multiple objective genetic algorithm for multi depot vehicle routin...
One of the well-known and highly used extensions of vehicle routing problem (VRP) is Vehicle Routing...
The vehicle routing problem with simultaneous pick-up and deliveries, which considers simultaneous d...
The VRP is a well-known combinatorial optimization problem in transport and logistics distribution. ...
The vehicle routing problem with simultaneous pick-up and deliveries, which considers simultaneous d...
The demand of distribution and reverse logistics is drastically increasing. In order to absorb custo...
The distribution of finished products from depots to customers is a practical and challenging proble...
Abstract: This paper presents a genetic algorithm for multi capacitated depot vehicle routing proble...
With advanced information technologies and industrial intelligence, Industry 4.0 has been witnessing...
Resource sharing (RS) integrated into the optimization of multi-depot pickup and delivery problem (M...
In the field of supply chain management and logistics, using vehicles to deliver products from suppl...
Summarization: Artificial Bee Colony algorithm is a very powerful Swarm Intelligence Algorithm that ...
Graduation date: 2011For manufacturing and service industries to stay competitive in this rapidly ch...
Abstract — A key element of many distribution systems is the routing and scheduling of vehicles thro...
This paper proposes a formulation of the vehicle routing problem with simultaneous pickup and delive...
Abstract — This paper presents a multiple objective genetic algorithm for multi depot vehicle routin...