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One-step-Ahead Adaptive Control for Gas Turbine Power Plants

机译:燃气轮机的一步一步自适应控制

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摘要

The feasibility of the application of One-Step-Ahead Adaptive (OSAA) Control technique to a gas turbine power plant is investigate.d The OSAA technique is a control algorithm especially suitable for nonlinear and time-varying systems. This technique uses the least square algorithm to estimate in real-time a linear model of the controlled system and uses the estimated linear model to evaluate the feedback control variables. The proposed technique allows to control the gas turbine power plant in a wide range of electric loads due to its intrinsic adaptive capabilities. Moreover, the OSAA control does not require the knowledge of the dynamic characteristics (e.g., state space systems or transfer functions) in order to design the control system. The OSAA control system has been applied to a single shaft gas turbine power plant, which is numerically simulated. The proposed control technique has been tested both in Single-Input Single Output (SISO) mode and in Multi-Input Multi-Output (MIMO) mode. Starting from a steady-state condition, the power plant has been supposed to undergo a step reduction of the electric load. The results show that the OSAA control technique effectively counteracts the load reduction with limited overshoots in the controlled variables and, introducing an integral correction with a negligible static error.
机译:研究了将一步自适应控制技术应用于燃气轮机发电厂的可行性。d OSAA技术是一种特别适用于非线性和时变系统的控制算法。该技术使用最小二乘算法实时估计受控系统的线性模型,并使用估计的线性模型评估反馈控制变量。所提出的技术由于其固有的自适应能力而允许在大范围的电力负载中控制燃气轮机发电厂。而且,为了设计控制系统,OSAA控制不需要了解动态特性(例如,状态空间系统或传递函数)。 OSAA控制系统已应用于单轴燃气轮机发电厂,并进行了数值模拟。所提出的控制技术已经在单输入单输出(SISO)模式和多输入多输出(MIMO)模式下进行了测试。从稳态条件开始,发电厂应该逐步降低电力负荷。结果表明,OSAA控制技术有效地抵消了受控变量中有限的过冲所产生的负载减少,并引入了可忽略不计的静态误差的积分校正。

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