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Development of an adaptive Smith predictor-based self-tuning PI controller for an HVAC system in a test room

机译:在测试室中为HVAC系统开发基于自适应Smith预估器的自校正PI控制器

摘要

This paper presents an adaptive Smith predictor-based self-tuning PI controller and its application to the air-conditioning system of a test room. The significant time delay of air-conditioning processes can lead to degradation of performance and instability of the control loop. The parameters of air-conditioning processes vary due to the changes in the operation conditions. By using a recursive least squares (RLS) algorithm combined with a z-domain fitting method, the parameters of the air-conditioning process in the closed loop including time delay can be estimated online. Based on the estimated dead-time, a Smith predictor, which uses a reference model, is adopted to reduce the unfavorable effects of the time delay in the air-conditioning system. Based on the predicted error and estimated values, the control signal of the control loop is calculated by a self-tuning PI controller using ITAE tuning rules. The performance, robustness and effectiveness of the proposed control method are validated in the experimental platform. The corresponding performance of the proposed control method is compared with an adaptive PI controller. Experiment results demonstrate that the proposed strategy achieves better performance compared with the adaptive PI controller considering the effects of set-point changes, parameter variations or load disturbances in HVAC systems.
机译:本文提出了一种基于Smith预估器的自适应自调整PI控制器及其在测试室空调系统中的应用。空调过程的明显时间延迟会导致性能下降和控制回路不稳定。空调过程的参数因操作条件的变化而变化。通过结合使用递归最小二乘(RLS)算法和z域拟合方法,可以在线估计包括时间延迟在内的闭环空调过程的参数。基于估计的停滞时间,采用了使用参考模型的Smith预测器,以减少空调系统中时间延迟的不利影响。基于预测的误差和估计值,由自调整PI控制器使用ITAE调整规则来计算控制回路的控制信号。实验平台验证了所提控制方法的性能,鲁棒性和有效性。将所提出的控制方法的相应性能与自适应PI控制器进行比较。实验结果表明,考虑到HVAC系统中设定点变化,参数变化或负载干扰的影响,与自适应PI控制器相比,该策略具有更好的性能。

著录项

  • 作者

    Bai J; Wang S; Zhang X;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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