• MATHEMATICAL MODELLING OF TECHNOLOGICAL PROCESSES AND SYSTEMS

    Application of artificial locust swarm routing algorithm for VFR flights planning

    Mathematical Modeling, Vol. 5 (2021), Issue 4, pg(s) 124-127

    Along recent years an approach of Artificial Locust Swarm Routing (ALSR) algorithm was developed for flights planning in Europe and for rules provided in EuroControl area of responsibility. Most researches were strictly related to IFR type of flights. However, there is a big area of interest in private aviation for short local flights under the top of VFR flight levels (FL195 and below). These flights have much specificity for planning and ALSR algorithm is found capable of solving these problems also, using this same idea of the algorithm like it was developed for IFR flights. One may see that the algorithm shows rather good results for such difficult area like Swiss Alps valleys and canyons.

  • Air space routing and flights planning: A problem statement and discussion of approaches to solution

    Mathematical Modeling, Vol. 2 (2018), Issue 4, pg(s) 139-142

    Air routing has become an important problem of recent years. Wide implementation of idea to use a free routing airspace (FRA) over the Europe and idea of exploiting FRA as a main airspace management resource to reduce air traffic problems revealed a necessity of a new look to a routing problem. Many previous solutions relied on predefined topology of airways and ability to exploit welldeveloped methods known in graph theory. Meanwhile the problem was current due to many factors needed to be involved in the airspace as a 3D-space: air management restrictions and different air spaces regulation rules, weather conditions, danger areas, aircraft’s characteristics, pilots’ preferences, etc. Moreover, the appearance of FRA has made it inappropriate to use previous algorithms. Most of these algorithms required a definite topology with known routing points connected with predefined edges, while the FRA may have only border points to fly into or fly out of the area and no definite edges inside. The task of constructing the route became the same difficult as obvious: any pilot can fly directly through the FRA, but the route should be built and confirmed prior to a take-off. Problem comes even more evident if considered for the unmanned flying vehicles (UFV) and the need for robots or AI systems to solve the routing problem by itselves. As a topping of the complexity of the problem, one may consider the upcoming difficulties of airspace congestion in FRA. Despite the problem is known for areas close to airports, it is still current to plan routes avoiding flights conflicts in the air and to avoid FRA high congestion. There are different researches on some particular problems and some approaches to solve these problems. Nevertheless, there is no complex problem statement yet. This research was focused on need of understanding the full scope of problems for air routing to understand the ability to build an efficient solution for the problem as a whole.

  • DOMINANT TECHNOLOGIES IN “INDUSTRY 4.0”

    HIERARCHICAL CONTROL OF MULTI-AUV SYSTEMS

    Industry 4.0, Vol. 2 (2017), Issue 2, pg(s) 60-63

    The paper highlights some approaches to fundamental problems of intelligent control of autonomous underwater vehicles (AUV) groups: logic-based approach to task management for inspection and protection of the water area, hybrid evolutionary models and algorithms for dynamic mission planning, and methods for rigorous analysis of discrete-continuous models of AUVs formations with discrete-event approach to AUV’s operational modes switching. Hierarchical three-level architecture of control system is supposed and various models of AUV group functioning at the different control levels are considered.