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Fault Diagnosis in Sensors of Boiler Following Control of a Thermal Power Plant

机译:火力发电厂锅炉跟随控制的传感器故障诊断

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摘要

In this paper a system of fault detection and isolation (FDI) in sensors of boiler following control of a thermal power plant is presented. The approach is based on a polytopic quasi-Linear Parameter Variant (q-LPV) model derived from a simplified nonlinear model for the boiler-turbine unit representing the dynamic behavior of the pressure in the first stage of the turbine, drum pressure, superheated steam pressure and electrical power. The nonlinear model is parameterized with real data operation of a thermal power plant, in a wide range of loads (low, medium and high). For residual generation a Luenberger-like observer based on the polytopic q-LPV model is designed. The performance of the FDI system is evaluated adequately by using a simulator in Simulink based on the nonlinear model. The main contribution of this work is to demonstrate that our proposed approach is feasible to be applied in a real thermal power plant.
机译:本文提出了一种在火电厂控制下的锅炉传感器故障检测与隔离(FDI)系统。该方法基于多目标准线性参数变量(q-LPV)模型,该模型源自简化的锅炉-涡轮机单元非线性模型,代表了涡轮机第一级压力,汽包压力,过热蒸汽的动态行为。压力和电力。非线性模型通过火力发电厂的实际数据操作在各种负载(低,中和高)下进行参数化。对于残差生成,设计了基于多点q-LPV模型的类似Luenberger的观察器。通过使用基于非线性模型的Simulink中的模拟器,可以充分评估FDI系统的性能。这项工作的主要贡献是证明我们提出的方法在实际的热电厂中是可行的。

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