会议论文详细信息
2nd international Tropical Renewable Energy Conference 2017
Modeling of turbine follow control with internal model control tuning method based on hysys
Satriyo, T.B.^1 ; Prasetya, H.E.G.^1 ; Permatasari, P.D.^1
Power Plant Engineering, Electronic Engineering Polytechnic Institute of Surabaya, Surabaya
60111, Indonesia^1
关键词: Control strategies;    Electricity production;    First order plus dead time;    Integral absolute errors;    Internal model control;    Pressure indicator;    Regulatory control;    Turbine governors;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/105/1/012119/pdf
DOI  :  10.1088/1755-1315/105/1/012119
来源: IOP
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【 摘 要 】

The power plant is one of the several industries whose product are used by consumers directly. The power plant requires an appropriate control strategy based on real-plant to maintain electricity production,. Turbine Follow Control (TFC) is one of the several control strategies for keeping electricity production. TFC is a control strategy that used to control throttle pressure based on Advanced Regulatory Control (ARC) concept. When there is a change of load on the generator, the error signal will be received by the indicator control. The error signal is used to respond fuel arrangement to maintain the main steam production. Furthermore, the changes of main steam production indicated by the pressure indicator control. It will be responded by the turbine governor valve to carry out a follow-up response in maintaining the main steam towards the turbine. The actual response is given in the form of the percentage of valve. This paper has been modeled TFC strategy using Internal Model Control (IMC) tuning method and First Order Plus Dead Time (FOPDT) approach for getting good control response based on HYSYS. In addition, IMC tuning response in this paper also depends on the ± 5% from setpoint test. From modeling of TFC based on HYSYS, the simulation shows that TFC is precise control strategy to handle the changes of load on the generator with integral absolute error value are 102,087.7 for +5% from setpoint test and 122,947.1 for -5% from setpoint test.

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