The diploma thesis addresses the issue of how to upgrade the design of electric cabinets based on the most common problems and challenges faced by installers, service technicians, and operators of automated industrial washing systems.
The problems and challenges discussed include ventilation and overheating issues, as well as the desire to expand system automation, add additional element protection, reduce wiring, and improve information feedback. The main goal is to have better control over the system, reduce failures, and extend the lifetime of components.
Electrical cabinets include power and control electrical connections and represent the central element for interaction between the user and the system via the interface. I will focus on the main power electrical cabinets, which supply power to the entire system, and communication electrical cabinets, which enable communication between electronic components.
In the first part of the diploma thesis, I will present the role of power electrical cabinet and then control electrical cabinet, which will give us a better insight into the role of electrical cabinets in automated industrial systems. This will be followed by an in-depth description of the power and signal connections within the system with already integrated elements, whose integration represents an upgrade of the electrical cabinets. I will add a description of the elements used in the connection for a better understanding of the description of the connection within individual electrical circuits and explain what difference these elements make in relation to the problems discussed.
Finally, I analyzed an article that shows the possibilities of using smart applications in automated industrial systems, which could form the basis for the introduction of smart applications for monitoring such automated industrial washing systems in the future. This could contribute to further improvements in electrical cabinets based on greater control and fault prediction. The approach opens up additional research opportunities, which could represent the beginning of a new era of automated industrial washing systems.
Improving the electrical cabinet by integrating additional elements represents an important step forward in automated industrial washing systems, as it can significantly increase reliability and improve the user experience. The diploma thesis opens up space for further research in the field of advanced diagnostics and adaptation of the design of electrical cabinets for future smart automated industrial washing systems.
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