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A development and testing framework for simulation-based supervisory control with application to optimal zone temperature ramping demand response using a modified genetic algorithm.

机译:用于基于仿真的监督控制的开发和测试框架,并使用改进的遗传算法将其应用于最佳区域温度上升需求响应。

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摘要

There is a growing demand for integrated control strategies for building systems with numerous responsive elements, such as solar shading devices, thermal storage and hybrid ventilation systems. Simulation-based supervisory control is a promising way of approaching this challenge. The essential idea is to use detailed building simulation real-time within a supervisory control system to test possible set-point configurations at each controller time-step before choosing the best configuration to use in the building. This dissertation presents a flexible software framework for simulation-based supervisory control, along with a modified genetic algorithm developed for use within it, and applies it to a case study of demand response by zone temperature ramping in an office space. Rule-based and simulation-based control variants are studied by using a two-model configuration (one acting as the 'real' building, the other being used within the simulation-based control framework). For the case study, simulation-based control was found to perform only slightly better than a logarithmic rule-based approach under ideal conditions, and worse under conditions of model or prediction inaccuracies. The results are of use in guiding further research, and the case study itself has been a good test of the software framework, which can be further developed and should be useful in future simulation-based control research.
机译:对于具有众多响应元素的建筑系统(例如,遮阳设备,蓄热和混合通风系统)的集成控制策略的需求日益增长。基于仿真的监督控制是应对这一挑战的一种有前途的方法。基本思想是在监控系统中实时使用详细的建筑物模拟,以在选择每个建筑物的最佳配置之前,在每个控制器时间步上测试可能的设定点配置。本文提出了一种基于仿真的监督控制的灵活软件框架,以及为在其中使用而开发的改进的遗传算法,并将其应用于通过办公空间中区域温度上升对需求响应的案例研究。通过使用两种模型配置(一种充当“真实”建筑物,另一种在基于仿真的控制框架中使用)研究基于规则和基于仿真的控制变量。对于案例研究,发现基于仿真的控制在理想条件下的性能仅比基于对数规则的方法稍好,而在模型或预测不准确的条件下则较差。结果可用于指导进一步的研究,案例研究本身已成为对软件框架的良好测试,可以进一步开发该软件框架,并应在将来基于仿真的控制研究中使用。

著录项

  • 作者

    Coffey, Brian.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.
  • 学位 M.A.Sc.
  • 年度 2008
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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