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Coordinated MIMO Control Design for a Power Plant

By: ISA Transactions
18 April, 2016
1 min read
Coordinated MIMO Control Design for a Power Plant
Coordinated MIMO Control Design for a Power Plant
Research engineers investigate a boiler-turbine coordinated multivariable control system based on improved sliding mode controller at a power plant.

This post is an excerpt from the journal ISA Transactions. All ISA Transactions articles are free to ISA members, or can be purchased from Elsevier Press.

coordinated-MIMO-control-design-power-plant Complete block diagram of a boiler-turbine system at a power plant.

Abstract:

For the participation of the steam power plants in regulating the network frequency, boilers and turbines should be co-ordinately controlled in addition to the base load productions. Lack of coordinated control over boiler–turbine may lead to instability; oscillation in producing power and boiler parameters; reduction in the reliability of the unit; and inflicting thermodynamic tension on devices. This paper proposes a boiler-turbine coordinated multivariable control system based on improved sliding mode controller (ISMC).

The system controls two main boiler-turbine parameters i.e., the turbine revolution and superheated steam pressure of the boiler output. For this purpose, a comprehensive model of the system including complete and exact description of the subsystems is extracted. The parameters of this model are determined according to our case study that is the 320 MW unit of Islam-Abad power plant in Isfahan/Iran.

The ISMC method is simulated on the power plant and its performance is compared with the related real PI (proportional-integral) controllers which have been used in this unit. The simulation results show the capability of the proposed controller system in controlling local network frequency and super-heated steam pressure in the presence of load variations and disturbances of boiler.

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