We study an extension to the general routing problem, which deals with integrating fixed route service with the general pickup and delivery problem to create a hybrid routing problem. The primary application for such a service is a dial-a-ride system used by transit agencies to transport disabled or elderly individuals. The main aim of the integration is to reduce the vehicle miles of the on-demand vehicles while not significantly reducing the customer service level. Due to the combinatorial nature of the problem, we propose a heuristic algorithm that provides an approximate solution, which is computationally efficient for solving large sized problems. The proposed heuristic is tested using real data from a transit agency.
This paper presents an optimization model and its application to a classical vehicle routing problem...
This paper describes a hybrid heuristic approach to construct transportation plans for a single-cust...
The dial-a-ride problem (DARP) is that of satisfying a number of pickup and drop-off customer reques...
The paratransit vehicle scheduling problem involves scheduling a fleet of specially equipped vehicle...
794121911Final report; Sept. 2009-Sept. 2011.PDFTech ReportUTCM 09-15-13DTRT06-G-0044Paratransit ser...
"As the demand for paratransit services increases, there is a constant pressure to maintain the qual...
A problem based on the actual passenger transportation operations of two community disability servic...
The transportation of elderly and impaired people is commonly solved as a Dial-A-Ride Problem (DARP)...
Abstract: This article presents the general concepts, mod-els, and computational techniques applied ...
This paper presents a methodology to solve the homogeneous vehicles routing problem with simultaneou...
The goal of this paper is to propose and experimentally compare a class of hybrid metaheuristics for...
This paper concerns operational planning of door-to-door transportation systems for the elderly and/...
AbstractIn this work we propose a hybrid algorithm for a class of Vehicle Routing Problems with homo...
In this paper, a two-phase hybrid algorithm to address the problem of scheduling visits to customers...
In this research, a new variant of the vehicle routing problem with time windows is addressed. The n...
This paper presents an optimization model and its application to a classical vehicle routing problem...
This paper describes a hybrid heuristic approach to construct transportation plans for a single-cust...
The dial-a-ride problem (DARP) is that of satisfying a number of pickup and drop-off customer reques...
The paratransit vehicle scheduling problem involves scheduling a fleet of specially equipped vehicle...
794121911Final report; Sept. 2009-Sept. 2011.PDFTech ReportUTCM 09-15-13DTRT06-G-0044Paratransit ser...
"As the demand for paratransit services increases, there is a constant pressure to maintain the qual...
A problem based on the actual passenger transportation operations of two community disability servic...
The transportation of elderly and impaired people is commonly solved as a Dial-A-Ride Problem (DARP)...
Abstract: This article presents the general concepts, mod-els, and computational techniques applied ...
This paper presents a methodology to solve the homogeneous vehicles routing problem with simultaneou...
The goal of this paper is to propose and experimentally compare a class of hybrid metaheuristics for...
This paper concerns operational planning of door-to-door transportation systems for the elderly and/...
AbstractIn this work we propose a hybrid algorithm for a class of Vehicle Routing Problems with homo...
In this paper, a two-phase hybrid algorithm to address the problem of scheduling visits to customers...
In this research, a new variant of the vehicle routing problem with time windows is addressed. The n...
This paper presents an optimization model and its application to a classical vehicle routing problem...
This paper describes a hybrid heuristic approach to construct transportation plans for a single-cust...
The dial-a-ride problem (DARP) is that of satisfying a number of pickup and drop-off customer reques...