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An online adaptive optimal control strategy for complex building chilled water systems involving intermediate heat exchangers

机译:具有中间热交换器的复杂建筑冷水系统的在线自适应最优控制策略

摘要

This paper presents an adaptive optimal control strategy for online control of complex chilled water systems involving intermediate heat exchangers to enhance operation and energy performances. This optimal control strategy determines the optimal settings of the heat exchanger outlet water temperature (hot side) and the required operating number of heat exchangers and pumps in order to minimize the total energy consumption of pumps under varying working conditions. Adaptive method is utilized to update the key parameters of the proposed models online. A simulated virtual platform representing a chilled water system in a super high-rise building was established to validate and evaluate the proposed optimal strategy. Test results show that the strategy has enhanced control robustness and reliability, particularly in avoiding deficit flow problem. Significant energy of chilled water pumps is saved when compared with conventional methods.
机译:本文提出了一种自适应最优控制策略,用于在线控制涉及中间热交换器的复杂冷水系统,以增强运行和能源性能。该最佳控制策略确定了热交换器出口水温(热侧)的最佳设置以及热交换器和泵的所需工作数量,以使在各种工况下泵的总能耗最小。利用自适应方法在线更新所提出模型的关键参数。建立了代表超高层建筑中的冷冻水系统的模拟虚拟平台,以验证和评估所提出的最佳策略。测试结果表明,该策略具有增强的控制鲁棒性和可靠性,尤其是在避免流量不足的问题上。与传统方法相比,可节省大量的冷冻水泵能量。

著录项

  • 作者

    Wang S; Gao DC; Sun Y; Xiao F;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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