The Dynamic Multi-track Airways (DMA) Concept for Air Traffic Management (ATM) proposes a network of high-altitude airways constructed of multiple, closely spaced, parallel tracks designed to increase en-route capacity in high-demand airspace corridors. Segregated from non-airway operations, these multi-track airways establish high-priority traffic flow corridors along optimal routes between major terminal areas throughout the National Airspace System (NAS). Air traffic controllers transition aircraft equipped for DMA operations to DMA entry points, the aircraft use autonomous control of airspeed to fly the continuous-airspace airway and achieve an economic benefit, and controllers then transition the aircraft from the DMA exit to the terminal area. Aircraft authority within the DMA includes responsibility for spacing and/or separation from other DMA aircraft. The DMA controller is responsible for coordinating the entry and exit of traffic to and from the DMA and for traffic flow management (TFM), including adjusting DMA routing on a daily basis to account for predicted weather and wind patterns and re-routing DMAs in real time to accommodate unpredicted weather changes. However, the DMA controller is not responsible for monitoring the DMA for traffic separation. This report defines the mature state concept, explores its feasibility and performance, and identifies potential benefits. The report also discusses (a) an analysis of a single DMA, which was modeled within the NAS to assess capacity and determine the impact of a single DMA on regional sector loads and conflict potential; (b) a demand analysis, which was conducted to determine likely city-pair candidates for a nationwide DMA network and to determine the expected demand fraction; (c) two track configurations, which were modeled and analyzed for their operational characteristic; (d) software-prototype airborne capabilities developed for DMA operations research; (e) a feasibility analysis of key attributes in the concept design; (f) a near-term, transitional application of the DMA concept as a proving ground for new airborne technologies; and (g) conclusions. The analysis indicates that the operational feasibility of a national DMA network faces significant challenges, especially for interactions between DMAs and between DMA and non-DMA traffic. Provided these issues are resolved, sectors near DMAs could experience significant local capacity benefits.
[1]
Robert A. Vivona,et al.
An Integrated Flight-Deck Decision-Support Tool in an Autonomous Flight Simulation
,
2004
.
[2]
Mark G. Ballin,et al.
Pilot In Command: A Feasibility Assessment of Autonomous Flight Management Operations
,
2004
.
[3]
Rosa M. Oseguera-Lohr,et al.
FLIGHT EVALUATION OF A TIME-BASED AIRBORNE INTER- ARRIVAL SPACING TOOL
,
2003
.
[4]
Doug Mielke,et al.
Airspace and Traffic Operations Simulation for Distributed ATM R esearch and Development
,
2005
.
[5]
Jacco M. Hoekstra,et al.
Designing for safety: the 'free flight' air traffic management concept
,
2002,
Reliab. Eng. Syst. Saf..
[6]
Robert A. Vivona,et al.
Pattern-Based Genetic Algorithm for Airborne Conflict Resolution
,
2006
.
[7]
Victor Carreño,et al.
Formal Verification of Conflict Detection Algorithms
,
2001,
CHARME.
[8]
George L. Donohue,et al.
Dynamic airspace super sectors (DASS) as high-density highways in the sky for a new US air traffic management system
,
2003,
IEEE Systems and Information Engineering Design Symposium, 2003.
[9]
Antonio A. Trani,et al.
Projecting Future Scheduled Airline Demand, Schedules and NGATS Benefits Using TSAM
,
2006
.
[10]
W Butler Ricky,et al.
On the Formal Verification of Conflict Detection Algorithms
,
2001
.
[11]
B. Barmore.
Airborne Precision Spacing: A Trajectory-Based Aprroach to Improve Terminal Area Operations
,
2006,
2006 ieee/aiaa 25TH Digital Avionics Systems Conference.
[12]
Terence S. Abbott.
Speed Control Law for Precision Terminal Area In-Trail Self Spacing
,
2002
.
[13]
J. Hoekstra,et al.
Traffic manager: a flexible desktop simulation tool enabling future ATM research
,
2005,
24th Digital Avionics Systems Conference.