首页> 外文期刊>Measurement and Control: Journal of the Institute of Measurement and Control >Active Fault Tolerant Control System for the Measurement Circuit in a Drum Boiler Feed-Water Control System
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Active Fault Tolerant Control System for the Measurement Circuit in a Drum Boiler Feed-Water Control System

机译:滚筒锅炉供给水控制系统中测量电路的主动容错控制系统

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This paper presents a water-level control system in a drum boiler. The system was equipped with a fault tolerant control-type diagnostic system. The paper presents the results of tests conducted on the fault tolerant control system implemented in the water-level control system in a boiler drum. The diagnostics of the measurement circuits was carried out online. To that end, the appropriate partial models were developed and tested. This allowed for the application of analytical redundancy for the measurement circuits. The paper also identifies the influence of diagnostics and fault tolerance on the values of reliability indices and operating safety of a power unit. Fault tolerant control systems increase the safety of a power unit operation, and the studies described in the paper directly contribute to them. These kinds of systems have not been used so far in power unit automation. Site tests confirmed the validity of the acquired concept for the diagnostic system. Fault tolerant control systems have not been commonly applied in power engineering yet. Studies of the water-level control system in a steam drum using the fault tolerant control system for the measurement circuits as presented in the paper are original ideas, providing a new solution. All control systems made for the study fulfil their role in a satisfactory way, which results in a minor deviation in the water-level adjustment in the boiler drum. The tests confirmed the efficiency of the fault detection algorithm. The created models of the water level and flows proved to be successful. Under a no-fault condition of the facility, there were no errors in the diagnoses and the values of all residua were below the detection thresholds. This was achieved despite a high value of measurement noises. The residua helped detect minor faults.
机译:本文介绍了硒鼓锅炉中的水位控制系统。该系统配备了容错控制型诊断系统。本文介绍了在锅炉鼓中水位控制系统中实现的容错控制系统进行的测试结果。测量电路的诊断在线进行。为此,开发和测试了适当的部分模型。这允许应用用于测量电路的分析冗余。本文还识别了诊断和容错对电源单元的可靠性指标值和操作安全性的影响。容错控制系统提高动力单元操作的安全性,论文中描述的研究直接有助于它们。到目前为止,这些系统尚未在电源单元自动化中使用。站点测试确认了所获取的诊断系统的概念的有效性。容错控制系统尚未在电力工程中应用于电力工程。使用纸张中提出的测量电路的容错控制系统在蒸汽鼓中进行水位控制系统是原创思路,提供了新的解决方案。为该研究制作的所有控制系统以满意的方式履行其作用,这导致锅炉鼓中的水位调节中的微小偏差。测试证实了故障检测算法的效率。被证明的水位和流量的创建模型成功。在设施的无故障条件下,诊断中没有错误,所有Residua的值低于检测阈值。尽管测量噪音高,但这实现了这一点。 Residua有助于检测轻微的错误。

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