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An optimal control strategy for complex building central chilled water systems for practical and real-time applications

机译:用于实际和实时应用的复杂建筑中央冷冻水系统的最佳控制策略

摘要

This paper presents an optimal control strategy for online control of central chilled water systems in complex building air-conditioning systems to enhance their energy efficiency. The optimal control strategy is formulated using a systematic approach by considering the system level and subsystem level characteristics and interactions among the overall system. The requirements and constraints of practical applications are also carefully considered during the development of this strategy. This optimal control strategy consists of the model-based performance predictor (i.e., simplified models), cost estimator (i.e., cost function), optimization technique, supervisory strategy and a number of local control strategies. The local control strategies are used to ensure the robust operation and keep track of control settings considering the dynamic characteristics of the local process environment. The performance of this strategy is tested and evaluated in a simulated virtual environment representing the complex central chilling system in a super high-rise building by comparing it with that of other control strategies. The results showed that this strategy is more energy efficient and cost effective than the other strategies for online applications. This strategy is being implemented in the super high-rise building under study for field application and validation.
机译:本文提出了一种在线控制复杂建筑空调系统中中央冷冻水系统的最佳控制策略,以提高其能源效率。通过考虑系统级别和子系统级别的特性以及整个系统之间的相互作用,使用系统方法制定了最佳控制策略。在制定该策略时,还应仔细考虑实际应用的要求和约束。这种最佳控制策略包括基于模型的性能预测器(即简化模型),成本估算器(即成本函数),优化技术,监督策略和许多本地控制策略。考虑到本地过程环境的动态特性,使用本地控制策略来确保鲁棒的操作并跟踪控制设置。通过将该策略与其他控制策略的性能进行比较,可以在代表超高层建筑中复杂的中央冷却系统的模拟虚拟环境中测试和评估此策略的性能。结果表明,该策略比其他在线应用程序策略更具能源效率和成本效益。此策略正在研究中的超高层建筑中实施,以进行现场应用和验证。

著录项

  • 作者

    Ma Z; Wang S;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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