DEVELOPMENT OF INTERACTIVE MODELING METHODS FOR THE SYNTHESIS OF INTELLIGENT CONTROL SYSTEMS FOR TECHNICAL OBJECTS IN THE DIGITAL ECONOMY

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Main Author: Mamutova Aygul Kalmurzaevna
Format: Recurso digital
Published: Zenodo 2026
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author Mamutova Aygul Kalmurzaevna
author_facet Mamutova Aygul Kalmurzaevna
contents <p>The digital economy has intensified the complexity of technical objects and increased the demand for intelligent,<br>adaptive, and data-driven control systems. Traditional control design approaches are often insufficient to address<br>uncertainty, dynamic environments, and real-time decision-making requirements. This study investigates the development<br>of interactive modeling methods for the synthesis of intelligent control systems for technical objects operating in digital<br>economic conditions. The research evaluates how interactive modeling influences system adaptability, control accuracy,<br>development efficiency, and decision-making quality. A mixed-methods research design was applied, involving simulation<br>experiments, expert evaluations, and performance analysis of intelligent control systems. Quantitative results demonstrated<br>a 30% improvement in control accuracy and a 35% reduction in system development time. Qualitative findings revealed<br>enhanced system transparency, improved designer interaction, and higher robustness of control strategies. The study<br>highlights the importance of combining interactive modeling, intelligent algorithms, and data-driven synthesis methods to<br>improve the effectiveness of control systems in the digital economy.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18266852
institution Zenodo
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle DEVELOPMENT OF INTERACTIVE MODELING METHODS FOR THE SYNTHESIS OF INTELLIGENT CONTROL SYSTEMS FOR TECHNICAL OBJECTS IN THE DIGITAL ECONOMY
Mamutova Aygul Kalmurzaevna
<p>The digital economy has intensified the complexity of technical objects and increased the demand for intelligent,<br>adaptive, and data-driven control systems. Traditional control design approaches are often insufficient to address<br>uncertainty, dynamic environments, and real-time decision-making requirements. This study investigates the development<br>of interactive modeling methods for the synthesis of intelligent control systems for technical objects operating in digital<br>economic conditions. The research evaluates how interactive modeling influences system adaptability, control accuracy,<br>development efficiency, and decision-making quality. A mixed-methods research design was applied, involving simulation<br>experiments, expert evaluations, and performance analysis of intelligent control systems. Quantitative results demonstrated<br>a 30% improvement in control accuracy and a 35% reduction in system development time. Qualitative findings revealed<br>enhanced system transparency, improved designer interaction, and higher robustness of control strategies. The study<br>highlights the importance of combining interactive modeling, intelligent algorithms, and data-driven synthesis methods to<br>improve the effectiveness of control systems in the digital economy.</p>
title DEVELOPMENT OF INTERACTIVE MODELING METHODS FOR THE SYNTHESIS OF INTELLIGENT CONTROL SYSTEMS FOR TECHNICAL OBJECTS IN THE DIGITAL ECONOMY
url https://doi.org/10.5281/zenodo.18266852