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A New Coordinated Control Strategy for Boiler-Turbine System of Coal-Fired Power Plant

机译:燃煤电厂锅炉-汽轮机系统的协调控制新策略

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This paper presents the new development of the boiler-turbine coordinated control strategy using fuzzy reasoning and autotuning techniques. The boiler-turbine system is a very complex process that is a multivariable, nonlinear, slowly time-varying plant with large settling time and a lot of uncertainties. As there exist strong couplings between the main steam pressure control loop and the power output control loop in the boiler-turbine unit with large time-delay and uncertainties, automatic coordinated control of the two loops is a very challenging problem. This paper presents a new coordinated control strategy (CCS) which is organized into two levels: a basic control level and a high supervision level. Proportional-integral derivative (PID) type controllers are used in the basic level to perform basic control functions while the decoupling between two control loops can be realized in the high level. A special subclass of fuzzy inference systems, called the Gaussian partition with evenly (GPE) spaced midpoints systems, is used to self-tune the main steam pressure PID controller's parameters online based on the error signal and its first difference, aimed at overcoming the uncertainties due to changing fuel calorific value, machine wear, contamination of the boiler heating surfaces and plant modeling errors. For the large variation of operating condition, a supervisory control level has been developed by autotuning technique. The developed CCS has been implemented in a power plant in China, and satisfactory industrial operation results demonstrate that the proposed control strategy has enhanced the adaptability and robustness of the process. Indeed, better control performance and economic benefit have been achieved.
机译:本文介绍了利用模糊推理和自整定技术的汽轮机协调控制策略的新发展。汽轮机系统是一个非常复杂的过程,它是一个多变量,非线性,时变缓慢的设备,具有较大的建立时间和很多不确定性。由于锅炉涡轮机的主蒸汽压力控制回路与功率输出控制回路之间存在强耦合,具有较大的时延和不确定性,因此两个回路的自动协调控制是一个非常具有挑战性的问题。本文提出了一种新的协调控制策略(CCS),该策略分为两个级别:基本控制级别和高级监管级别。基本级别中使用比例积分微分(PID)类型的控制器来执行基本控制功能,而两个控制回路之间的去耦可以实现较高级别。一种特殊的模糊推理系统子类,称为高斯分区和均匀的中点系统,用于基于误差信号及其第一差在线自动调整主蒸汽压力PID控制器的参数,以克服不确定性。由于燃料热值的变化,机器磨损,锅炉受热面的污染以及工厂建模错误。对于运行条件的较大变化,已经通过自动调整技术开发了监控级别。已在中国的电厂中实施了已开发的CCS,令人满意的工业运行结果表明,所提出的控制策略增强了过程的适应性和鲁棒性。实际上,已经实现了更好的控制性能和经济效益。

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