From statistics, through new requirements to mathematical modelling of SAT aircraft safety

Author:

Dziugiel Bartosz,Goraj Zdobyslaw Jan

Abstract

Purpose The purpose of this study is to investigate the influence of the technical and operational specifications of the Small Aircraft Transport System (SAT/SATS) to the achieved safety level. Design/methodology/approach Safety estimation was made with the use of mathematical model of safety of light aircraft in commercial operations developed on the basis of Federal Aviation Administration (FAA) data. The analysis was conducted for two different SATS business models based on Direct AiR Transport (DART) concept. It allowed for the investigation of the impact of technical specifications of the aircraft included into the SATS fleet as well as the selected elements of the applied business model on SATS safety level. Findings It was found that the proposed changes to DART system resulted in a significant improvement of safety. Mean Time Between Incidents and Accident (MTBIA) increased by 200 per cent. Additionally, the introduced alterations impacted the weights of particular domains and pilot’s error became less critical than the technical reliability. Practical implications It was shown that the application of new requirements influences both the safety level and the cost of operation, which was demonstrated within the ESPOSA and DART projects. Additionally, it was indicated that further effort to improve the light aircraft safety is absolutely necessary. Originality/value Originality consists in combining in one mathematical model both the aircraft configuration and the rules for business operation. Optimization of selected parameters of the system leads to a significant reduction in the accident number and to keeping the cost increment at a reasonable level. It was also found that the resulted improvement sometimes cannot be sufficient to consider a small aircraft operation fully safe, mainly owing to the numerous restrictions because of its small weight and loading capacity.

Publisher

Emerald

Subject

Aerospace Engineering

Reference15 articles.

1. Airbus (2013), “Commercial aviation accident 1958-2013. a statistical analysis”, available at: http://asndata.aviation-safety.net/industry-reports/Airbus-Commercial-Aviation-Accidents-1958-2013.pdf (accessed 14 November 2016).

2. European Space Agency (2016), “EGNOS for aviation”, available at: www.esa.int/Our_Activities/Navigation/EGNOS/What_is_EGNOS (accessed 29 December 2016).

3. Federal Aviation Administration (2013), “General aviation and part 135 activity surveys - CY 2013”, available at: www.faa.gov/data_research/aviation_data_statistics/general_aviation/CY2013/ (accessed 20 December 2016).

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