污水处理过程串级控制策略的性能评价

Hongbin Liu, MinJung Kim, JungJin Lim, C. Yoo
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引用次数: 6

摘要

随着公众环保意识的增强和环保法规的日益严格,污水处理过程的有效控制已成为研究热点。本文在基准仿真模型1 (BSM1)中引入了一种串级MPC和PID控制策略。所提出的串级控制结构由控制出水硝酸盐浓度的主MPC控制器和控制最终缺氧室硝酸盐浓度的二级PID控制器组成。该方法同时控制出水和最终厌氧反应器中的硝酸盐浓度,严格满足出水质量,并通过控制外部碳投加量更快地消除干扰的影响。由于控制性能评估(CPA)技术具有确定当前控制器的性能和定位可达到的最佳性能的特点,因此本文的另一个新颖之处是将CPA技术应用于废水处理过程。CPA结果表明,主MPC控制器比副PID控制器具有更大的改进潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance assessment of cascade control strategy in wastewater treatment process
As the public awareness of environmental protection increases and the environmental regulations become more stringent, effective control of the wastewater treatment process (WWTP) has become a research hotspot. In this paper, a cascade MPC and PID control strategy is introduced to the Benchmark Simulation Model 1 (BSM1). The proposed cascade control structure is composed of a primary MPC controller to control the nitrate concentration in the effluent and a secondary PID controller to control the nitrate concentration in the final anoxic compartment. The suggested method controls the nitrate concentrations in the effluent as well as in the final anoxic reactor simultaneously to strictly satisfy the quality of the effluent as well as to remove the effects of disturbances more quickly by manipulating the external carbon dosage. Because the control performance assessment (CPA) technique has the features of determining the capability of the current controller and locating the best achievable performance, the other novelty of this paper is to take the CPA technology into the wastewater treatment process. The CPA results indicate that the primary MPC controller has more potential to improve compared with the secondary PID controller.
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