This article discusses the possibilities of reducing noise pollution in the vicinity of a selected airport, with an emphasis on practical measures. The proposed procedures, which are routinely employed at commercial airports, would be ineffective or financially unsustainable under the circumstances of the military airports. The objective at military airports is not to maximise capacity, as at civil airports, where the desire to increase capacity is primarily related to profit. The primary objective for military airports is to perform defined tasks, which may include pilot training, search and rescue exercises and combat training. The main measures proposed to reduce noise pollution in the vicinity of the villages are changes in departure and arrival routes, the splitting of night operations into two parts and the introduction of a new article in the AIP and Airport Regulations prohibiting air operations over and in close proximity to the villages nearby. Finally, it is stressed that a significant reduction in noise will only be possible with the support of changes in legislation or above-standard financial investment by the airport operator.
Military pilot education, including flight training, is a long, expensive, and complex process. The main goal is to produce as many skilled professionals as possible ready to perform flight tasks on the front-line aircraft and push them to their workload limits with complete control. To achieve this goal, it is necessary to select and educate young people with the aptitude and abilities to perform the most demanding military flight tasks. The creation of a model for the education and training of military pilots depends on the requirements of the Czech Air Force Command and the teaching capacities of the University of Defence and the Aviation Training Centre in Pardubice. Rearmament of the Czech Air Force and the required number of pilots requires a change in the new military pilot training model. This contribution describes a new approach to Czech Air Force pilot education and training in the current security conditions in the world.
The development of measures in civil aviation protection against illegal acts is based on the analysis of incidents, which can be divided into four development stages. Before 9/11, civil aviation entities were mostly reactive; only new threats warranted a proactive approach to mitigating air threats. The present article’s aim was to analyse the development of methods for checking passengers and objects intended for air transport. The analysis of selected incidents, control processes, and the level of security achieved confirm that the implemented security methods and proactive approach to working with air traffic risks are a suitable compromise between passenger comfort, technological development of detection devices, and processes at the airport.
A region's economic development stability is directly linked to the level of services provided and the transport and communication infrastructure available to it. Airport security in the context of transport infrastructure development and the further development of regional logistics facilities is an important factor affecting both the public and private sectors. The causes and consequences investigation, which are the basic means for finding solutions in the safety area of the selected critical infrastructure subject was solved using the Ishikawa diagram. The search for causation based on the principle where each result has its own cause or combination of causes. We can use the 6M approach (staff, methods, machines, materials, measurement, and mother-nature), or 8M, which is supplemented by management and maintenance. In the process of elaborating this article, the consequences defined and the causes underlying the proposed solutions were examined in a successive way. This paper points out possible directions of development in the field of airport security within the context of the public logistics centre development. Obviously, there is no totally secure system and an increase in the level of security can be ensured by correlating all systems used to increase of the critical infrastructure elements resilience.
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