Pilot error in process of helicopter starting
Aircraft Engineering and Aerospace Technology
ISSN: 0002-2667
Article publication date: 2 January 2018
Abstract
Purpose
The purpose of this paper is to identify potential helicopter pilots’ errors during their interaction with the flight deck in the process of starting a helicopter in night-time conditions.
Design/methodology/approach
Systematic Human Error Reduction and Prediction Approach is used for the analysis of the pilot–flight deck interaction. This methodology was used for the identification of errors for 30 pilots during a period of 10 years. In total, 55 errors were identified, and most common errors noted are: error of omission, caused by pilots’ lack of attention or longer periods of no flying, and error of wrong execution, caused by misunderstanding a situation.
Findings
Hierarchical task analysis and classification of pilot’s tasks were used for the analysis of consequences, probability of occurrence, criticality and remedial strategies for the identified pilot error.
Research limitations/implications
This paper does not give an ergonomic analysis of the flight deck, as that is not its subject. However, results of the research presented in this paper, together with results presented in references, clearly show that there are disadvantages in the ergonomic design of flight decks.
Practical implications
Based on the identified pilot errors and with respect of existing ergonomic solution, it is possible to begin with the reconstruction of flight decks.
Social implications
Higher quality of pilot–flight deck interaction must be ensured for both pilots’ and passengers’ safety, as even a slightest error can lead to catastrophic consequences.
Originality/value
The value of this paper lies in the fact that it points to the need for synergy of ergonomic design and human reliability methods.
Keywords
Citation
Stojiljkovic, E., Bijelic, B., Grozdanovic, M., Radovanovic, M. and Djokic, I. (2018), "Pilot error in process of helicopter starting", Aircraft Engineering and Aerospace Technology, Vol. 90 No. 1, pp. 158-165. https://doi.org/10.1108/AEAT-08-2015-0190
Publisher
:Emerald Publishing Limited
Copyright © 2018, Emerald Publishing Limited