The Monotonic Lagrangian Grid for Rapid Air-Traffic Evaluation
Author(s) -
Carolyn Kaplan,
Johann Dahm,
Elaine S. Oran,
Natalia Alexandrov,
Jay P. Boris
Publication year - 2010
Publication title -
11th aiaa aviation technology, integration, and operations (atio) conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2010-9336
Subject(s) - monotonic function , grid , lagrangian , computer science , mathematics , mathematical analysis , geometry
The Air Traffic Monotonic Lagrangian Grid (ATMLG) is presented as a tool to evaluate new air traffic system concepts. The model, based on an algorithm called the Monotonic Lagrangian Grid (MLG), can quickly sort, track, and update positions of many aircraft, both on the ground (at airports) and in the air. The underlying data structure is based on the MLG, which is used for sorting and ordering positions and other data needed to describe N moving bodies and their interactions. Aircraft that are close to each other in physical space are always near neighbors in the MLG data arrays, resulting in a fast nearestneighbor interaction algorithm that scales as N. Recent upgrades to ATMLG include adding blank placeholders within the MLG data structure, which makes it possible to dynamically change the MLG size and also improves the quality of the MLG grid. Additional upgrades include adding FAA flight plan data, such as waypoints and arrival and departure times from the Enhanced Traffic Management System (ETMS), and combining the MLG with the state-of-the-art strategic and tactical conflict detection and resolution algorithms from the NASA-developed Stratway software. In this paper, we present results from our early efforts to couple ATMLG with the Stratway software, and we demonstrate that it can be used to quickly simulate air traffic flow for a very large ETMS dataset.
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