scholarly journals AUTOMATED CONTROL SYSTEM OF CHILDREN’S CAROUSEL

Author(s):  
A. I. Repnikov ◽  
M. P. Kukhtik

Automated control system for children's carousel has been developed and manufactured. Control cabinet for children's carousel has been designed and control program for programmable logic controller has been written. Control system increases operation reliability of children's carousel and secures ability to control rotation speed of racks.

Author(s):  
Anastasia Stetsenko ◽  
Andrii Havryliuk

The work is devoted to the development of an intelligent control system of the "Smart House" based on a programmable logic controller.


2020 ◽  
Vol 6 ◽  
pp. 44-49
Author(s):  
Viliya Ivanova ◽  
Igor Ivanov ◽  
Igor Kiselev

This paper presents a novel HVAC automated control system built on a programmable logic controller. The system was designed using one of the IEC 61131 programming languages being used for programming PLCs. It means a significantly wider range of control options compared to conventional systems. Also we propose an upgrade option for an air supply unit with water heating, the key idea of which is implementing qualitative control instead of quantitative one. The mixing part including a three-way valve and recirculating pump provides control of heater water temperature lowering possibility of occurring frost under low temperatures.


Author(s):  
P.S. Anikin ◽  
G.M. Shilo ◽  
R.A. Kulykovskyi ◽  
D.E. Molochkov

Purpose. Development of the robotic platform automated control system architecture, development of the software control algorithm. Methodology. To implement the algorithm of the control program, computer modeling of thermal regimes in CAE systems is used. The basic parameters of the single layer printing technique were obtained by experimental use of the wire plus arc additive manufacturing (WAAM) technology. Findings. Requirements for manufacturability and printing quality of the manufactured parts were defined in the form of geometric dimensions, surface waviness, parameters of the desired microstructure state, residual stresses, maintaining of the optimal manufacturing speed. Based on the requirements of manufacturability analysis, an algorithm for the control program was developed. Robotic platform automated control system architecture with feedback device for the thermal mode control, parameters of the geometrical form of the manufactured part and weld pool were developed. Three -level hierarchical model, which gives an ability to consider in the process of 3D printing each level individually in terms of welding bead, layer and wall, was developed. The input data for the operation of the automated control system of the robotic platform using the technology of electric arc welding are determined.  Basic geometrical parameters and the simple welding bead and the methods of overlapping of two or more beads were shown. Critical differences between ideal and real welding overlapping models were considered for necessity of taking into account whilst generating robot control software. Analysis of the possibilities for the CAE simulation of the three-dimensional printing using wire plus arc additive manufacturing technology is performed  to determine the influence of the temperature parameters, mechanical loads, toolpath change, and based on the data obtained, it became possible to determine residual stresses and defects in manufactured parts.  Originality.  Robotic platform automated control system architecture with feedback device for the control of thermal mode, parameters of the geometrical form of the manufactured part and weld pool was developed. Three-level hierarchical model for the wire plus arc additive manufacturing (WAAM) technology was created. Software control algorithm which provides an opportunity to improve geometrical and mechanical properties of the manufactured parts was developed. Practical value. Development of an automated control system for 3D printing robotic platform with WAAM implemented technology, which will provide an opportunity for increase in the printing accuracy of the manufactured parts and will help to reduce manufacturing time.


Author(s):  
O. Fedchenko ◽  
М. Poltorak

The article deals with the integration of the geoinformation framework into a unified automated control system of the Armed Forces of Ukraine. Keywords: control system, geoinformation system, geospatial information, single coordinate space, geoinformation support, operational environment.


2019 ◽  
Vol 109 ◽  
pp. 00074
Author(s):  
Nataliya Pryadko ◽  
Kateryna Ternova ◽  
Hennadii Strelnykov ◽  
Lev Muzyka ◽  
Inna Verkhorobina

Jet grinding considers a rather energy-intensive production. For obtaining high mill productivity, it is necessary to control the process in order to prevent the transfer the energy intensity value to a critical one. This work shows the possibilities of jet grinding studying based on the process acoustic signal analysis and to develop a mill mode control system to achieve optimum productivity. There were determined that decrease in the activity and maximum amplitudes of the acoustic signals in the grinding zone is a sign of deviation from the optimal fine grinding mode, which leads to a decrease in the mill productivity and requires timely material loading. For control of ground product quality it’s necessary to control the frequency dispersion of signals corresponding to the control class, and check the absence or presence of signals corresponding to other size classes for zone behind the classifier. The developed automated control system of jet grinding allows implementing the optimal parameters of the mill operation by control the acoustic parameters of the grinding zone for optimum jet loading with material. The dispersion control of the ready product is based on acoustic monitoring of a two-phase flow in the product transportation zone.


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