Abstract Direct energy balance based active disturbance rejection control for coal-fired power plant
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Direct energy balance based active disturbance rejection control for coal-fired power plant

机译:基于直接能量平衡的燃煤电厂主动扰动控制

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Abstract The conventional direct energy balance (DEB) based PI control can fulfill the fundamental tracking requirements of the coal-fired power plant. However, it is challenging to deal with the cases when the coal quality variation is present. To this end, this paper introduces the active disturbance rejection control (ADRC) to the DEB structure, where the coal quality variation is deemed as a kind of unknown disturbance that can be estimated and mitigated promptly. Firstly, the nonlinearity of a recent power plant model is analyzed based on the gap metric, which provides guidance on how to set the pressure set-point in line with the power demand. Secondly, the approximate decoupling effect of the DEB structure is analyzed based on the relative gain analysis in frequency domain. Finally, the synthesis of the DEB based ADRC control system is carried out based on multi-objective optimization. The optimized ADRC results show that the integrated absolute error (IAE) indices of the tracking performances in both loops can be simultaneously improved, in comparison with the DEB based PI control and H control system. The regulation performance in the presence of the coal quality variation is significantly improved under the ADRC control scheme. Moreover, the robustness of the proposed strategy is shown comparable with the H control. Highlights ? The decoupling ability of the direct energy balance strategy is analyzed in both time-domain and frequency domain. ? The control objective in terms of the coal quality variation is put forward and studied from an academic point of view. ? The nonlinearity of the boiler-turbine unit is analyzed via gap metric and tackled based on active disturbance rejection control (ADRC). ? Multi-objective optimization is used for tuning the parameters of ADRC. ? The proposed strategy fulfills the objectives of tracking, disturbance rejection and robustness by slightly modifying the currently-using control structure. ]]>
机译:<![cdata [ 抽象 基于传统的直接能量平衡(Deb)的PI控制可以满足燃煤电厂的基本跟踪要求。但是,在存在煤质量变化时,应对壳体有挑战性。为此,本文将主动扰动抑制控制(ADRC)介绍到DEB结构,其中煤质质量变化被认为是一种未知的干扰,可以迅速估计和减轻。首先,基于间隙度量分析了最近的电厂模型的非线性,这为如何将压力设定点与电力需求提供指导提供指导。其次,基于频域中的相对增益分析分析了DEB结构的近似解耦效果。最后,基于多目标优化进行了基于DEB基ADRC控制系统的合成。优化的ADRC结果表明,与基于DEB的PI控制和H 控制系统。在ADRC控制方案下,在煤质质量变化存在下的调节性能显着改善。此外,所提出的策略的稳健性显示与H 控制。 < / ce:摘要> 突出显示 在时间域和频域中分析了直接能量平衡策略的解耦能力。 控制目标提出煤炭质量变异并从学术角度研究。 通过间隙度量分析锅炉 - 涡轮机单元的非线性,并基于主动干扰抑制控制(ADRC)来解决。 多目标优化用于调整ADRC的参数。< / ce:para> 拟议的策略通过略微修改目前使用的控制结构来满足跟踪,干扰拒绝和鲁棒性的目标。 ]]>

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