Scheduling Aircraft Landings under Constrained Position Shifting
نویسندگان
چکیده
Optimal scheduling of airport runway operations can play an important role in improving the safety and efficiency of the National Airspace System (NAS). Methods that compute the optimal landing sequence and landing times of aircraft, while delivering high quality solutions, must accommodate practical issues that affect the implementation of the schedule. One such practical consideration, known as Constrained Position Shifting (CPS), is the restriction that each aircraft must land within a pre-specified number of positions of its place in the First-Come-First-Served sequence. The problem of scheduling landings of aircraft in a CPS environment is considered, in order to maximize runway throughput (minimize the completion time of the landing sequence), subject to operational constraints such as FAA-specified minimum inter-arrival spacing restrictions, precedence relationships among aircraft that arise either from airline preferences or air traffic control procedures that prevent overtaking, and time windows (representing possible control actions) during which each aircraft landing can occur. A Dynamic-Programming-based approach that scales linearly in the number of aircraft is presented, and the computational experience is described with a prototype implementation on realistic data for Denver International Airport.
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تاریخ انتشار 2006