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FAULT DIAGNOSIS IN CONTROL AND MEASUREMENT COMPENSATION BY VIRTUAL SENSORS IN A THERMAL POWER PLANT

SEPTEMBER 2017   -  Volume: 92 -  Pages: 545-551

DOI:

https://doi.org/10.6036/8238

Authors:

GUADALUPE MADRIGAL ESPINOSA - CARLOS MANUEL ASTORGA ZARAGOZA -
MANUEL ADAM MEDINA
- LILIA OSORIO GORDILLO - MIGUEL VAZQUEZ ROMAN

Disciplines:

  • Instrumentation technology (INGENIERIA DE CONTROL )

Downloads:   167

Cites in Web of Science:  1

How to cite this paper:  
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Received Date :   7 December 2016

Reviewing Date :   9 December 2016

Accepted Date :   2 March 2017


Key words:
Observador, Diagnóstico de fallas, Modelo no lineal, Modelo LPV, Sensor virtual, Central Termoeléctrica, Observer, Fault diagnosis, Nonlinear model, Virtual sensor, Power thermal plant.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

In this work the system of fault diagnosis in control and measurement compensation by virtual sensors in a thermal power plant is presented. The diagnostic system is applied to control systems of the power plant, to compensate for faulty sensor measurements. The design is based on Luenberger-like observers for Linear Parameter-Varying (LPV). An LPV model of the steam generator and turbine is parameterized with real data from the operation of a power plant and represents the dynamic behavior of the pressure in the first stage of the turbine, drum pressure, superheated steam pressure and electrical power. The main contribution of this work is to show that the proposed diagnostic system is suitable for real plant applications. In this sense, the performance of the diagnostic system is evaluated adequately in a scenario by using a simulator that emulates the real operation of a power thermal plant.

Key Words: Observer, Fault diagnosis, Nonlinear model, LPV model, Virtual sensor, Power thermal plant.

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