This article investigates various methods and tools for self-monitoring and fault tolerance in flow measurement transducers used in industrial processes. The study focuses on key techniques such as the use of redundancy, generation of reference values, analysis of measurement signals, and control of disturbance variables. These methods allow transducers to detect potential faults, ensure reliable operation, and maintain measurement accuracy even under adverse conditions. The article highlights how self-monitoring contributes to improving system safety, increasing reliability, and reducing downtime. It also discusses the integration of intelligent monitoring systems that support predictive maintenance and real-time diagnostics. Fault-tolerant sensors with self-monitoring capabilities can significantly reduce operational risks, minimize maintenance costs, and enhance overall efficiency in industrial environments. The paper outlines recent developments and trends in smart sensor technologies and emphasizes their practical applications in modern automated systems. By enabling early detection of errors and reducing dependency on external supervision, these advanced sensors represent a crucial step toward the automation and digitalization of industrial process control.
| Mualliflar | Elbek Ortiqov |
|---|---|
| Jurnal | Кимёвий технология. Назорат ва бошқарув |
| Nashr sanasi | 2025-09-03 |
| Jild | 2025 |
| Son | 4 |
| Betlar | 50-55 |
| Til | en |
| DOI | 10.59048/2181-1105.1698 |
DOI: 10.59048/2181-1105.1698 · Maqolaning asl sahifasi
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