Збірники наукових праць ЦНТУ
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Item Вплив якості програмного забезпечення на продуктивність праці та стомлюваність працівників(ЦНТУ, 2024) Марченко, К. М.; Оришака, О. В.; Брагінець, С. О.; Берестенко, Д. О.; Marchenko, K.; Oryshaka, O.; Brahinets, S.; Berestenko, D.У статті розглянуті аспекти наукової організації праці та охорони праці в галузі інформаційних технологій. Проаналізовано чинники продуктивності праці на комп'ютеризованих робочих місцях та стомлюваності працівників, визначено їх пріоритетність. Показано, що продуктивність праці є інтегральним критерієм оптимальності організації праці та програмного забезпечення на комп'ютеризованому робочому місці. Приділено увагу питанням ефективності та ергономічності програмного забезпечення, зокрема, програмних інтерфейсів, як важливої складової в підвищенні продуктивності праці та охорони праці. In the information society, the nomenclature of industries and professions related to the use of computer equipment and software is continuously growing. This leads to the need to revise the classic principles of labor organization at workplaces. The scientific organization of work related to the use of computer technology must take into account the psychophysiological features of working with information, appropriate technical means and software, which contributes to both safe and healthy working conditions, the fulfillment of the requirements of occupational health and safety standards, and its high efficiency , in particular, productivity. Therefore, the scientific organization of work and labor protection are organically related fields. Research on the optimal organization of work when working with a computer and software is an urgent task.Item Проблеми інформаційної гігієни в ІТ-сфері(ЦНТУ, 2022) Марченко, К. М.; Оришака, О. В.; Марченко, А. К.; Marchenko, K.; Oryshaka, O.; Marchenko, A.У статті розглянуті питання інформаційної гігієни праці в ІТ-сфері. Окреслені компетенції інформаційної гігієни як галузі охорони праці. Розглянуто проблеми, які виникають при роботі працівників з інформацією. Досліджені різні типи інформаційних потоків на робочому місці та розроблені методи обчислення часу безперервної роботи з інформаційними потоками цих типів. In social production there is a constant expansion of the range of professions related to information processing. In addition to the emergence of new professions, computer information processing is also being introduced into a number of traditional professions. Therefore, requests to ensure healthy working conditions in such workplaces have led to the emergence of such an area of life safety and health and safety as information hygiene. An urgent task is to study the rules and regulations when working with information in the field of information technology. Problems that arise when working with information include increased intensity of information flows, simultaneous inclusion of multiple information flows, heterogeneity of incoming tasks, or excessive monotony of information flow, ambiguous information, ignorance of the operator regarding information, short deadlines. In addition, the state of the user of information is significantly affected by the emotional color of information, increased density of destructive facts, calls for hostility and violence, negative predictions, covert manipulation and more. The mental burden on the employee who processes information and makes decisions based on it depends on the spread of responsibility and the degree of responsibility, the magnitude of possible losses in making mistakes or making decisions, especially when it comes to significant financial obligations, and even more risk to the state. for human health and life. Due to the expansion of the range of professions related to the interaction of workers with information flows, the introduction of information hygiene as a unit of labor protection is an urgent task. Due to the specifics of working with information as a means and product of labor, it is necessary to study the working conditions of workers in typical IT jobs and the impact of information flows on the well-being and health of people performing different types of work. It is necessary to develop a set of rules and recommendations of information hygiene in the interaction of employees with information. An important task is to determine the types of work associated with intensive information flows and to conduct experimental research to determine the maximum allowable workload of workers in the performance of these works.Item Ризики впровадження штучного інтелекту в комп’ютерні системи(ЦНТУ, 2022) Марченко, К. М.; Оришака, О. В.; Марченко, А. К.; Мельник, А. М.; Marchenko, K.; Oryshaka, О.; Marchenko, А.; Melnick, А.У статті розглянуті питання автоматизованої обробки інформації в комп’ютерних системах. Розглянуті вимоги, яким повинні відповідати комп’ютерні системи. Підкреслюється неможливість забезпечення абсолютної надійності алгоритмів та програмного забезпечення комп’ютерні системи, отже, повної адекватності отриманих рішень. Проаналізовані сфери використання штучного інтелекту та зроблені висновки про доцільність та безпечність його впровадження в окремих галузях з точки зору безпеки життєдіяльності людей та охорони праці. Since the absolute reliability of computer systems and the results of information processes that run in them can not be guaranteed, the task of research is to identify critical areas where such errors and failures are unacceptable. The main problems with the introduction of artificial intelligence in computer systems are the inability to predict all real situations and program the behavior of the machine adequately to them, lack of reliability and software errors. The input on which artificial intelligence is taught may be incorrect. In addition, artificial intelligence systems are influenced by the way of thinking and values of its developers, who are not always familiar with psychology, sociology and other humanities. These shortcomings during the use of artificial intelligence systems have led to many incidents, including fatal. The analysis of the sample of artificial intelligence error messages allowed us to determine which areas are critical errors, ie where the use of artificial intelligence systems is associated with significant risk. In particular, these are such areas as medicine, military affairs, transport, manufacturing, where people and robotic systems cooperate, hazardous industries, energy, social management, legal institutions and more. Currently, there is no regulatory and legal framework for the use of artificial intelligence, so its implementation is spontaneous, which leads to unpredictable results and accidents. Artificial intelligence used in critical infrastructures, in areas related to human health and life, belongs to the category of high risk. Based on the analysis and due to the impossibility of ensuring the absolute reliability of computer systems and their software, the authors do not recommend the use of artificial intelligence in areas related to safety, health and human life, especially large human teams. Devices using artificial intelligence systems should be marked with messages about its use with a clear warning about the partial reliability of the device in terms of safety and consumer responsibility for the use of such a device. The authors strongly discourage the use of artificial intelligence in responsible decision-making in areas related to the security of large groups of people.