1–20 von 1,288 Ergebnissen
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    Missed Approach Procedures in Advanced Air Mobility: Conceptual Exploration

    J. Homola / N. Zhyla | NTIS | 2023
    Schlagwörter: Missed approach

    Modeling Performance and Noise of Advanced Operational Procedures for Current and Future Aircraft

    Freier Zugriff
    Thomas, Jacqueline / Hansman, R. John | DSpace@MIT | 2017
    Schlagwörter: approach procedures

    Simulated Vision-based Approach and Landing System for Advanced Air Mobility

    E. Kawamura / C. Dolph / K. Kannan et al. | NTIS | 2022
    Schlagwörter: Approach

    Landsat 9 Micrometeoroid and Orbital Debris (MMOD) Mission Success Approach

    M. S. Pryzby / S. Hull / A. Russo et al. | NTIS | 2019
    Schlagwörter: Approach

      Landsat 9 Micrometeoroid and Orbital Debris (MMOD) Mission Success Approach

      M. S. Pryzby / S. Hull / A. Russo et al. | NTIS | 2019
      Schlagwörter: Approach

    Overview of a Trajectory-Based Solution for En Route and Terminal Area Self-Spacing: Fourth Revision

    S.T Abbott | NTIS | 2013
    Schlagwörter: Aircraft approach spacing , Approach control

    Interplanetary Terminal Procedure Design Applied to Lunar Landing

    D. Zahn / S. Eggum | NTIS | 2023
    Schlagwörter: Lunar approach procedures

    Atc Simulation of Helicopter Ifr Approaches into Major Terminal Areas Using Rnav, Mls, and Cdti

    L. Tobias / H. Q. Lee / L. L. Peach et al. | NTIS | 1981
    Schlagwörter: Approach indicators , Aircraft approach spacing , Approach control , Instrument approach

    Visual Approach Slope Indicator (Vasi) System for Long-Bodied Aircraft

    R. F. Gates | NTIS | 1970
    Schlagwörter: Approach indicators , Approach lights , Approach , Visual approach slope indicators , VASI(Visual Approach Slope Indicators)

    Dynamic Routes for Arrivals in Weather: Concept Overview and Status

    D. R. Isaacson | NTIS | 2019
    Schlagwörter: Approach

    Use of Data Comm by Flight Crew to Conduct Interval Management Operations to Parallel Dependent Runways

    B. T. Baxley / C. Hubbs / R. Shay et al. | NTIS | 2011
    Schlagwörter: Instrument approach , Approach

    Concept for Airborne Precision Spacing for Dependent Parallel Approaches

    B. E. Barmore / B. T. Baxley / T. S. Abbott et al. | NTIS | 2012
    Schlagwörter: Aircraft approach spacing , Approach control

    Research Of Airborne Precision Spacing to Improve Airport Arrival Operations

    B. E. Barmore / B. T. Baxley / J. L. Murdoch | NTIS | 2011
    Schlagwörter: Aircraft approach spacing , Instrument approach , Approach control

    Visual Approach Slope Indicator (VASI) Improvements

    T. H. Paprocki | NTIS | 1973
    Schlagwörter: Approach indicators , Approach , VASI(Visual Approach Slope Indicators) , Visual approach slope indicators

    NASA Vision for Rotary Wing Propulsion Research

    NTIS | 2012
    Schlagwörter: Rotary Wing Approach (RWA)

    Techniques for Air Traffic Planning and Handling in the Terminal Area

    M. Schubert | NTIS | 1982
    Schlagwörter: Radar approach control , Aircraft approach spacing , Approach control

    Visual Aids for Secondary Airports

    T. H. Paprocki | NTIS | 1970
    Schlagwörter: Approach lights , Approach indicators , SAVASI(Simplified Abbriviated Visual Approach Slope Indicators) , Simplified abbriviated visual approach slope indicators

    Test of Glide Slope Guidance with and without Simplified Abbreviated Visual Approach Slope Indicator

    G. S. Brown / R. L. Sulzer | NTIS | 1974
    Schlagwörter: Approach , Visual approach slope indicators

    Design and Flight Demonstration Test of a Continuous Descent Approach Procedure for Louisville International Airport

    Freier Zugriff
    Clarke, John-Paul / Ho, Nhut / Ren, Lilling et al. | DSpace@MIT | 2004
    Schlagwörter: approach procedure

    NASA ATD-1 Avionics Phase 2: Flight Test Plan

    J. A. Brown | NTIS | 2017
    Schlagwörter: Aircraft approach spacing , Instrument approach

    ATM Technology Demonstration 1 (ATD-1): EcoDemonstrator ASTAR Guided Arrival Research (EAGAR)

    R. Roper | NTIS | 2015
    Schlagwörter: Aircraft approach spacing , Approach control