The project is dedicated to the development of experimental samples of hardware-software complexes for seamless positioning of objects inside and outside the buildings to ensure the implementation of the principle “always and everywhere”. The work substantiates the need for developing a project dedicated to the creation of a hardware-software geo-information system for positioning objects. To achieve this goal, the analysis of shortcomings of existing technologies for object positioning is carried out. This analysis allowed identifying the main tasks that need to be addressed. A review of existing approaches to the development of geographic information positioning systems was held. The advantages of the developed geoinformation complex for object positioning are described. The main results and the effect of the project are characterized.
The development of road transport has a positive impact on society: freight and passenger transport are carried out, and communication between cities is improving. But as cars increase, the speed and intensity of traffic increases. And this affects the growth of traffic violations. About 90% of accidents occur due to the fault of drivers of vehicles that do not comply with the speed limit, as well as the rules of travel. Automatic detection systems for traffic violations have been recognized all over the world and have proven their effectiveness. But there is a need to develop systems for recording violations based on uniform and clear requirements. This will reduce the number of low-quality hardware and related software. The work is devoted to the development of the functional structure of the information system for photo-video recording of traffic violations based on common requirements and standards.
This paper describes a project for integrating a medical and diagnostic information system in a medical facility. At the moment, making effective and timely decisions in diagnosis and treatment is most important. Integration of systems has significantly improved the efficiency of decision-making by updating data. The unified information space allowed to increase the objectivity of diagnostics and increase the reliability of the information system. A critical factor in making a decision is the stage at which the disease is detected, as well as a description of what types of medical care are important for analysis. In addition, the need to synchronize on the basis of the detailed information for operational planning and routing of patients. Integration of solutions will increase the speed of passing examinations and the speed of making a final diagnosis. Thanks to the implemented solution, it became possible to increase the speed and improve the quality of services provided. The ability to synchronize activity planning based on effective diagnostics is essential.
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