##plugins.themes.academic_pro.article.main##

Abstract

Energy saving in the automation of technological processes is carried out with the help of energy-saving monitoring equipment through the software of the operating system. This system helps automate robotic processes to identify remote indicators to automatically implement energy-saving operations through technological system operations. Also, as another feature, the system only requires a local network to connect. Regardless of the technological system, the technical characteristics of the central monitoring equipment that ensures automatic operation and the automated energy-saving monitoring equipment are similar to each other. By objects designed to save energy, this system is the optimal operation of the heat source system, the adjustment of the temperature of the supply water. In the technological system, according to the system, it will be possible to change technological parameters such as heat source equipment, room temperature adjustment and outdoor air intake volume adjustment. Currently, the technical system operations manager has the role of performing these energy-saving operations, but finding the optimal value for each of these operations poses challenges. The operations manager is also responsible for tasks outside of facility operations, such as maintenance management, so regularly changing optimal settings can be a very problematic system. This system uses robotic process automation technology

Keywords

technological system process automation technical robotization

##plugins.themes.academic_pro.article.details##

How to Cite
Amanbaev Nursultan Salamat o‘g‘li. (2024). Program for the use of energy-saving operational technological systems in the automation of technological processes. Texas Journal of Engineering and Technology, 32, 1–4. https://doi.org/10.62480/tjet.2024.vol32.pp1-4

References

  1. Yeshmuratova, A., and N. Amanbaev. "Ensuring Computer Data and Management System Security." International Bulletin of Applied Science and Technology 3.4 (2023): 282-287.
  2. Yeshmuratova, Amangul. "TECHNOLOGICAL METHODS OF ENSURING INFORMATION SECURITY IN TECHNICAL SYSTEMS." Евразийский журнал академических исследований 3.4 (2023): 188-192.
  3. Siddikov, I., et al. "Research of transforming circuits of electromagnets sensor with distributed parameters." 10 th International Symposium on intelegent Manufacturing and Service Systems. 2019.
  4. Siddikov, I. Kh, et al. "Modelling of transducers of nonsymmetrical signals of electrical nets." 2019 International Conference on Information Science and Communications Technologies (ICISCT). IEEE, 2019.
  5. Abubakirov, Azizjan Bazarbaevich. "Research of the electromagnetic transducers for control of current of three phases nets." European science review 5-6 (2018): 267-271.
  6. Ilkhomjon, Siddikov, et al. "Methodology of calculation of techno-economic indices of application of sources of reactive power." European science review 1-2 (2018): 248-251.
  7. Siddikov, I. X., et al. "Modeling the secondary strengthening process and the sensor of multiphase primary currents of reactive power of renewable electro energy supply." Solid State Technology 63.6 (2020): 13143-13148.
  8. Abubakirov, A. B., et al. "Application of automatic control and electricity measurement system in traction power supply system." ACADEMICIA: An International Multidisciplinary Research Journal 11.3 (2021): 180-186.
  9. Djalilov, A., et al. "System for measuring and analysis of vibration in electric motors of irrigation facilities." IOP Conference Series: Earth and Environmental Science. Vol. 868. No. 1. IOP Publishing, 2021.
  10. Bazarbayevich, Abubakirov Azizjan, Kurbaniyazov Timur Urunbayevich, and Nazarov Muzaffar Pirnazarovich. "Reactive power and voltage parameters control in network system." INNOVATIVE ACHIEVEMENTS IN SCIENCE 2022 2.13 (2022): 16-20.
  11. Abubakirov, A. B., et al. "Sensor characteristics monitoring and control of single and three-phase currents in electric networks." ACADEMICIA: An International Multidisciplinary Research Journal 11.3 (2021): 2282-2287.
  12. Lezhnina, Yuliya, et al. "Monitoring of asymmetric values and parameters of electric networks." E3S Web of Conferences. Vol. 371. EDP Sciences, 2023.
  13. Siddikov, Lkhomzhon, et al. "Analysis of current conversion primary sensors dynamic characteristics of a reactive power source with renewable energy sources into secondary voltage." E3S Web of Conferences. Vol. 281. EDP Sciences, 2021.
  14. Сиддиков, И. Х., et al. "Исследование показателей надежности и вероятности работоспособности датчиков контроля и управления энергопотреблением." Инженерно-строительный вестник Прикаспия 1 (31) (2020): 74-78.
  15. Abubakirov, A. B., et al. "Enforcement of controlled compensating devices in power systems Scinces of Europe." Sciences of Europe (Praha, Czech Republic) 1.38 (2019): 41.
  16. Abubakirov, Azizjan, et al. "REVIEW OF DYNAMIC CHARACTERISTICS OF SECONDARY CURRENT SENSORS OF REACTIVE POWER SOURCES." Theoretical & Applied Science 6 (2020): 48-53.
  17. Siddikov, I. Kh, et al. "Achieving energy efficiency through modernization of relay protection and automation in electricity transmission and distribution Current trends in improving systems process control and management and productions." Republican Scientific and Technical Conference. 2019.