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Application of Active Disturbance Rejection Control Technology in Distributed Control System of Coal-fired Power Generation

机译:激动扰动抑制控制技术在燃煤发电分布式控制系统中的应用

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Distributed Control System plays a role of "brain" and control center for coal-fired power generation unit. Super critical (SC) and Ultra-super critical (USC) power generation units with large capacity, high parameters, high efficiency have been the key units of coal fired power industry. Reliability and stability of these units are preconditions for safety of large grid. And the automatic control system and control strategy with good performance are the basis for safety and stability of power plant. SC and USC are multi-inputs, multi-outputs system with strong coupling and nonlinearity. Good performance couldn't be achieved by employing conventional PID control technology. This paper first introduces how embedded Active Disturbance Rejection Control algorithm is implemented in DCS. Then, the ADRC coordinated control scheme for Super critical one-through power generation unit is presented. The simulation results obtained from the DCS show that the proposed control scheme can effectively solve problems of strong nonlinearity, uncertainty, coupling, large time delay. And it can improve greatly the control performance of coordinated control system for SC units.
机译:分布式控制系统起到“脑”和燃煤发电单元的控制中心的作用。超级关键(SC)和超超级关键(USC)发电机,具有大容量,高参数,高效率一直是燃煤电力行业的关键单位。这些单位的可靠性和稳定性是大网格安全的前提条件。和具有良好性能的自动控制系统和控制策略是发电厂安全性和稳定性的基础。 SC和USC是多输入,具有强耦合和非线性的多输出系统。通过采用传统的PID控制技术无法实现良好的性能。本文首先介绍了在DCS中实现了嵌入式主动扰动抑制控制算法。然后,提出了用于超临界透视一发电单元的ADRC协调控制方案。从DCS获得的仿真结果表明,所提出的控制方案可以有效地解决强烈的非线性,不确定性,耦合,较大的时间延迟问题。它可以提高协调控制系统的控制性能。

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