120
Views
0
CrossRef citations to date
0
Altmetric
True Experiments

The Role of Basic Flight Simulators in the Selection of Ab Initio Airline Pilots

ORCID Icon, , &

References

  • ALMamari, K., & Traynor, A. (2019). Multiple test batteries as predictors for pilot performance: A meta-analytic investigation. International Journal of Selection and Assessment, 27(4), 337–356. https://doi.org/10.1111/ijsa.12258
  • ALMamari, K., & Traynor, A. (2021). The role of general and specific cognitive abilities in predicting performance of three occupations: Evidence from bifactor models. Journal of Intelligence, 9(3), 40. https://doi.org/10.3390/jintelligence9030040
  • Arendasy, M., Sommer, M., & Hergovich, A. (2007). Statistical judgment formation in personnel selection: A study in military aviation psychology. Military Psychology, 19(2), 119–136. https://doi.org/10.1080/08995600701323418
  • Brown, M. T., & Tinsley, H. E. A. (1983). Discriminant analysis. Journal of Leisure Research, 15(4), 290–310. https://doi.org/10.1080/00222216.1983.11969564
  • Carretta, T. R., & Ree, M. J. (1997). A preliminary evaluation of causal models of male and female acquisition of pilot skills. The International Journal of Aviation Psychology, 7(4), 353–364. https://doi.org/10.1207/s15327108ijap0704_7
  • Cattell, R. B. (1971). Abilities: Their structure, growth, and action. Houghton Mifflin.
  • Causse, M., Dehais, F., & Pastor, J. (2011). Executive functions and pilot characteristics predict flight simulator performance in general aviation pilots. The International Journal of Aviation Psychology, 21(3), 217–234. https://doi.org/10.1080/10508414.2011.582441
  • Crane, M., Brabazon, G., Gucciardi, F., Loveday, T., & Wiggins, M. (2017). General self-efficacy and psychological resilience promote skill acquisition rate under psychological pressure. The Australasian Journal of Organisational Psychology, 10, e3. https://doi.org/10.1017/orp.2017.3
  • Damos, D. L. (1993). Using meta-analysis to compare the predictive validity of single- and multiple-task measures to flight performance. Human Factors: The Journal of the Human Factors & Ergonomics Society, 35(4), 615–628. https://doi.org/10.1177/001872089303500403
  • Darr, W. (2009). A psychometric examination of the Canadian automated pilot selection system (CAPSS) DGMPRA TM 2009-024. Defence R&D Canada.
  • Forgues, S. L. (2014). Aptitude Testing of Military Pilot Candidates [ PhD thesis], Queen’s University.
  • Gilovich, T., Keltner, D., & Nisbett, R. E. (2006). Being a member of a stigmatized group: Stereotype threat. In T. Gilovich, D. Keltner, & R. E. Nisbett (Eds.), Social psychology (pp. 467-468). W. W. Norton.
  • Goeters, K. M., & Maschke, P. (2004). Cost-benefit analysis of pilot seletion: The economic value of psychological testing. In K.-M. Goeters (Ed.), Aviation psychology: Practice and research (pp. 203–208). Ashgate.
  • González Cabeza, I., Molesworth, B., Good, M., Caponecchia, C., & Steffensen, R. (2021). Investigating the predictive validity of the COMPASS pilot selection test. The International Journal of Aerospace Psychology, 31(3), 252–268. https://doi.org/10.1080/24721840.2021.1885297
  • Gress, W., & Willkomm, B. (1996). Simulator-based test systems as a measure to improve the prognostic value of aircrew selection. Paper presented at the Selection and Training Advances in Aviation: AGARD Conference Proceedings 588, Prague, Czech Republic.
  • Hardy, D. J., & Parasuraman, R. (1997). Cognition and flight performance in older pilots. Journal of Experimental Psychology: Applied, 3(4), 313–348. https://doi.org/10.1037/1076-898X.3.4.313
  • Haslbeck, A., & Bengler, K. (2016). Pilots’ gaze strategies and manual control performance using occlusion as a measurement technique during a simulated manual flight task. Cognition, Technology & Work, 18(3), 529–540. https://doi.org/10.1007/s10111-016-0382-2
  • Haslbeck, A., & Zhang, B. (2017). I spy with my little eye: Analysis of airline pilots’ gaze patterns in a manual instrument flight scenario. Applied Ergonomics, 63, 62–71. https://doi.org/10.1016/j.apergo.2017.03.015
  • Hoermann, H.-J., & Goerke, P. (2014). Assessment of social competence for pilot selection - a combined analysis of self-report and behavior-oriented approaches. The International Journal of Aviation Psychology, 24(1), 6–28. https://doi.org/10.1080/10508414.2014.860843
  • Hoermann, H.-J., Noser, P., & Stelling, D. (2018). A psychometrician’s dream: Test validities in an unrestricted sample of future Swiss air force pilots. Paper presented at the Proceedings of the 33rd EAAP Conference, Dubrovnik, Croatia.
  • Hoermann, H.-J., Stadler, K., & Wium, J. (2022). Common practices of psychological selection of aviation personnel in Europe. Transportation Research Procedia, 66(6), 8–15. https://doi.org/10.1016/j.trpro.2022.12.002
  • Huemer, V. A., Hayashi, M., Renema, F., Elkins, S., McCandless, J. W., & McCann, R. S. (2005). Characterizing scan patterns in a spacecraft cockpit simulator: Expert vs. novice performance. Paper presented at the Proceedings of the Human Factors and Ergonomics Society 49th Annual Meeting, Orlando, FL.
  • Hunter, D. R., & Burke, E. F. (1994). Predicting aircraft pilot-training success: A meta-analysis of published research. The International Journal of Aviation Psychology, 4(4), 297–313. https://doi.org/10.1207/s15327108ijap0404_1
  • Johannes, B., Salnitski, V., Soll, H., Rauch, M., Goeters, K.-M., Maschke, P., Stelling, D., & Eißfeldt, H. (2007). Performance assessment in a flight simulator test—validation of a space psychology methodology. Acta Astronautica, 60(4–7), 379–382. https://doi.org/10.1016/J.ACTAASTRO.2006.09.006
  • Johnston, P. J., & Catano, V. M. (2013). Investigating the validity of previous flying experience, both actual and simulated, in predicting initial and advanced military pilot training performance. The International Journal of Aviation Psychology, 23(3), 227–244. https://doi.org/10.1080/10508414.2013.799352
  • Kennedy, Q., Taylor, J., Heraldez, D., Noda, A., Lazzeroni, L. C., & Yesavage, J. (2013). Intraindividual variability in basic reaction time predicts middle-aged and older pilots’ flight simulator performance. Journals of Gerontology Series B: Psychological Sciences and Social Sciences, 68(4), 487–494. https://doi.org/10.1093/geronb/gbs090
  • Korteling, H. J. E., Helsdingen, A. S., & Sluimer, R. R. (2017). An empirical evaluation of transfer-of-training of two flight simulation games. Simulation & Gaming, 48(1), 8–35. https://doi.org/10.1177/1046878116671057
  • Martinussen, M. (1996). Psychological measures as predictors of pilot performance: A meta-analysis. The International Journal of Aviation Psychology, 6(1), 1–20. https://doi.org/10.1207/s15327108ijap0601_1
  • Maschke, P. (1987). Temperament structure scales (TSS). NoESA-TT-1069. Oberpfaffenhofen.
  • McCloy, T. M. (1980). Measures of Time-Sharing Skill and Gender as Predictors of Flight Simulator Performance.
  • Mittelstädt, J. M., Pecena, Y., Oubaid, V., & Maschke, P. (2016a). Construct validity of the temperament structure scales within the big five framework in aerospace selection. Aviation Psychology and Applied Human Factors, 6(2), 68–80. https://doi.org/10.1027/2192-0923/a000101
  • Mittelstädt, J. M., Pecena, Y., Oubaid, V., & Maschke, P. (2016b). Psychometric personality differences between candidates in astronaut selection. Aerospace Medicine and Human Performance, 87(11), 933–939. https://doi.org/10.3357/AMHP.4548.2016
  • Morrow, D. G., Lee, A., & Rodvold, M. (1993). Analysis of problems in routine controller-pilot communication. The International Journal of Aviation Psychology, 3(4), 285–302. https://doi.org/10.1207/s15327108ijap0304_3
  • Noser, P., & Läge, D. (2011). Eignungsdiagnose von Militärpiloten: Testentwicklung zur Messung von Multitasking-Fähigkeiten. Universität Zürich.
  • Park, K. S., & Lee, S. W. (1992). A computer-aided aptitude test for predicting flight performance of trainees. Human Factors: The Journal of the Human Factors & Ergonomics Society, 34(2), 189–204. https://doi.org/10.1177/001872089203400205
  • Pfeiffer, M. G., Horey, J. D., & Butrimas, S. K. (1991). Transfer of simulated instrument training to instrument and contact flight. The International Journal of Aviation Psychology, 1(3), 219–229. https://doi.org/10.1207/s15327108ijap0103_3
  • Philpot, E. E., Brooker, A. E., & Biegalski, C. S. (1993). Effects of sedating and nonsedating antihistamines on flying performance. Military Medicine, 158(10), 654–660. https://doi.org/10.1093/milmed/158.10.654
  • Ree, M. J., & Carretta, T. R. (1994). The correlation of general cognitive ability and psychomotor tracking tests. International Journal of Selection and Assessment, 2(4), 209–216. https://doi.org/10.1111/j.1468-2389.1994.tb00142.x
  • Ree, M. J., & Carretta, T. R. (1996). Central role of g in military pilot selection. The International Journal of Aviation Psychology, 6(2), 111–123. https://doi.org/10.1207/s15327108ijap0602_1
  • Ree, M. J., Carretta, T. R., Earles, J. A., & Albert, W. (1994). Sign changes when correcting for range restriction: A note on pearson’s and lawley’s selection formulas. Journal of Applied Psychology, 79(2), 298–301. https://doi.org/10.1037/0021-9010.79.2.298
  • Russell, T. L., Katkowski, D., Le, H., & Rosse, R. L. (2005). Psychomotor tests. In D. J. Knapp, C. E. Sager, & T. R. Tremble (Eds.), Development of experimental army enlisted personnel selection and classification tests and job performance criteria (ADA438314) (pp. 155–180). Army Research Institute for the Behavioral & Social Sciences.
  • Singh, I. L., Molloy, R., & Parasuraman, R. (1993). Individual differences in monitoring failures of automation. The Journal of General Psychology, 120(3), 357–373. https://doi.org/10.1080/00221309.1993.9711153
  • Taylor, J., O’Hara, R., Mumenthaler, M. S., & Yesavage, J. (2000). Relationship of CogScreen-AE to flight simulator performance and pilot age. Aviation, Space and Environmental Medicine, 71(4), 373–380.
  • Thorson, C. M., Kelly, J. P., Forse, R. A., & Turaga, K. K. (2011). Can we continue to ignore gender differences in performance on simulation trainers? Journal of Laparoendoscopic & Advanced Surgical Techniques, 21(4), 329–333. https://doi.org/10.1089/lap.2010.0368
  • Van Benthem, K., & Herdman, C. M. (2016). Cognitive factors mediate the relation between age and fight path maintenance in general aviation. Aviation Psychology and Applied Human Factors, 6(2), 81–90. https://doi.org/10.1027/2192-0923/a000102
  • Vine, S. J., Uiga, L., Lavric, A., Moore, L. J., Tsaneva-Atanasova, K., & Wilson, M. R. (2014). Individual reactions to stress predict performance during a critical aviation incident. Anxiety, Stress & Coping, 28(4), 467–477. https://doi.org/10.1080/10615806.2014.986722
  • Voyer, D., Voyer, S., & Bryden, M. P. (1995). Magnitude of sex differences in spatial abilities: A meta-analysis and consideration of critical variables. Psychological Bulletin, 117(2), 250–270. https://doi.org/10.1037/0033-2909.117.2.250
  • Wingestad, T. (2005). Selection of offshore rotary wing pilots: Do psychological tests predict simulator performance? https://www.wingestad.no/files/Helikopterpiloter_eng.pdf
  • Yesavage, J., Taylor, J., Mumenthaler, M. S., Noda, A., & O’Hara, R. (1999). Relationship of age and simulated flight performance. Journal of the American Geriatrics Society, 47(7), 819–823. https://doi.org/10.1111/j.1532-5415.1999.tb03838.x
  • Zierke, O. (2014). Predictive validity of knowledge tests for pilot training outcome. Aviation Psychology and Applied Human Factors, 4(2), 98–105. https://doi.org/10.1027/2192-0923/a000061
  • Zierke, O., & Schudlik, K. (2020). 25 Jahre DLR-Validitätsstudien zur Pilotenauswahl. Paper presented at the 6. Fachtagung der Deutschen Gesellschaft für Luft- und Raumfahrtpsychologie,

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.