首页> 外文期刊>Control Systems Technology, IEEE Transactions on >Generic Nonsmooth src='/images/tex/25771.gif' alt='mathcal {H}_{infty }'> Output Synthesis: Application to a Coal-Fired Boiler/Turbine Unit With Actuator Dead Zone
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Generic Nonsmooth src='/images/tex/25771.gif' alt='mathcal {H}_{infty }'> Output Synthesis: Application to a Coal-Fired Boiler/Turbine Unit With Actuator Dead Zone

机译:通用非平滑 src =“ / images / tex / 25771.gif” alt =“ mathcal {H} _ {infty}”> 输出综合:应用于燃煤锅炉/带有执行器死区的涡轮机

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摘要

Actuator nonidealities, such as backlash, dead zone, and others, present in a number of industrial systems, are known to severely degrade system performance. Providing nonconservative closed-loop robust performance guarantees for these systems in a consistent manner has been an open problem. For example, in boiler/turbine units, the turbine valve position actuation for manipulating steam flow rate is characterized by a small mismatch between the turbine valve command and the actual valve position, producing a small steady-state regulation error in the plant outputs. The standard linear controller designed to provide zero steady-state error regulation drives this error to zero, producing the undesirable oscillations in the control signals and the plant outputs. This paper develops a nonsmooth output regulator theory addressing this problem and applies this theory to the experimentally validated boiler/turbine model with actuator dead zone. The simulation results showing a considerable performance improvement are given.
机译:已知许多工业系统中存在的执行器非理想性,例如间隙,死区等,会严重降低系统性能。以一致的方式为这些系统提供非保守的闭环鲁棒性能保证一直是一个未解决的问题。例如,在锅炉/涡轮机组中,用于调节蒸汽流量的涡轮阀位置致动的特征是涡轮阀指令与实际阀位置之间的匹配度较小,从而在工厂输出中产生了较小的稳态调节误差。设计用于提供零稳态误差调节的标准线性控制器将该误差驱动为零,从而在控制信号和设备输出中产生不良振荡。本文提出了一种解决此问题的非平稳输出调节器理论,并将该理论应用于经过实验验证的带有执行器死区的锅炉/涡轮机模型。仿真结果显示了相当大的性能改进。

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