User Request Evaluation Tool and Controller–Pilot Data Link Communications: Integration Benefits Assessment

Author:

Rakas Jasenka1,Hansen Mark2,Jirajaruporn Wanjira3,Bolic Tatjana3

Affiliation:

1. 107D McLaughlin Hall, University of California at Berkeley, National Center of Excellence for Aviation Operations Research, Institute for Transportation Studies, Berkeley, CA 94720

2. 107B McLaughlin Hall, University of California at Berkeley, National Center of Excellence for Aviation Operations Research, Institute for Transportation Studies, Berkeley, CA 94720

3. 107E McLaughlin Hall, University of California at Berkeley, National Center of Excellence for Aviation Operations Research, Institute for Transportation Studies, Berkeley, CA 94720

Abstract

Explored are the benefits of integrating User Request Evaluation Tool (URET) and Controller-Pilot Data Link Communications (CPDLC). Controller-pilot voice-communication messages and aircraft traffic flows and conflicts are analyzed in great detail in one representative, URET-operating en route sector. On the basis of the mapped URET data and the real-world communication messages, a base case and two alternative scenarios were analyzed to estimate the number of clearances that are given to pilots to resolve aircraft conflicts a sufficient time before the start of the conflict, and to determine the reduction in frequency congestion possible if such messages were sent via data link. It was found that the highest frequency use, which corresponded to the first traffic peak, was reduced 27% after the second-scenario messages were removed from the base-case scenario. After removing the non-time-critical conflict-resolution messages, the total reduction was 59%. Frequency use during the highest number of aircraft conflicts was reduced 65% after all messages from the second and the third scenario were removed. Thus, the benefits of integrating CPDLC and URET are significant. If non-time-critical conflict messages were transmitted via data link in the integrated CPDLC and URET environment, they could considerably improve the frequency congestion. More important, the largest benefits would be experienced in situations involving a large number of aircraft conflicts, or during busy periods of traffic. These improvements could further help to reduce the number of communication errors (and the consequent air traffic control workload), as well as the number of operational errors.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference10 articles.

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Analysis and Modeling of Controller-Pilot Miscommunication Messages;AIAA 5th ATIO and16th Lighter-Than-Air Sys Tech. and Balloon Systems Conferences;2005-09-26

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