ROBUST METHOD TO DEFINE AN OPTIMUM LEVEL OF AN AIR TRAFFIC CONTROLLER SIMULATOR TRAINING
Journal Title: Вісник Національного Авіаційного Університету - Year 2018, Vol 74, Issue 1
Abstract
Purpose: to set optimum level of preparation and to struct ure the process of trainee preparation, as well as to analyze outcomes for ATC instructor. Methods : we have chosen to define an optimum level of preparation are Robust, mean square and mean median methods. The most reliable method to protect our data from outliers is Robust method. Results: to manage the position of outcomes we forced to structure specific filtering tasks which are mandatory to be done by train ee, in order to guaranty not exceeding predefined level of preparation. To satisfy our goal we have also predefined media tools to apply, such as: Part Task Trainer, Other Training Devises, Radar Tr ainer, Automated Work Place ‘Situation’. Discussion: professional preparation of an air traffic controller is a very complicated and time-consuming process with many specialists and instructors been involved. P reparation process roughly divided into the part of theoretical knowledge obtai ning and the part where trainees are practic ing to convert theoretical material into practical skills with the help of Simulator. Fo r the interim check, common criteria of skill acquisition process is predefined by evaluation of technologica l operations: Acceptance of duty on the work place, Phraseology adequacy, Coordination with adjacent un its, Regularity of flights, Accuracy of aircraft’s positions determination, Correspondence of decision ma king to given situation, Provision of proper separation and general Safety issues, Adequacy of cons ole operations. Instructor evaluates trainee on all his activities, beginning from trainee’s readiness of ta sk execution ending by feedback analysis and provision of further recommendations. Completeness, adequacy and qua lity of mentioned above results depend in direct on quality of instructor.
Authors and Affiliations
Vitalii Lazorenko, Volodymyr Kharchenko
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