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Demand-side management in office buildings in Kuwait through an ice-storage assisted HVAC system with model predictive control

机译:通过具有模型预测控制的储冰辅助HVaC系统对科威特办公楼的需求侧管理

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摘要

Examining methods for controlling the electricity demand in Kuwait was the main objective and motivation of this researchp roject. The extensiveu se of air-conditioning for indoor cooling in office and large commercial buildings in Kuwait and the Gulf States represents a major part of the power and electricity consumption in such countries. The rising electricity generation cost and growing rates of consumption continuously demand the construction new power plants. Devising and enforcing Demand-SideM anagemen(t DSM) in the form of energye fficient operations trategies was the response of this research project to provide a means to rectify this situation using the demand-side management technique known as demand levelling or load shifting. State of the art demand-sidem anagementte chniquesh ave been examined through the developmenot f a model basedp redictive control optimisations trategyf or an integrateda ndm odulara pproachto the provisiono f ice thermals torage. To evaluate the potential of ice-storage assisted air-conditioning systems in flattening the demand curve at peak times during the summer months in Kuwait, a model of a Heating, Ventilation, and Air-conditioning (HVAC) plant was developed in Matlab. The model engaged the use of model based predictive control (MPQ) as an optimisation tool for the plant as a whole. The model with MPC was developed to chose and decide on which control strategy to operate the integrated ice-storage HVAC plant. The model succeeded in optimising the operation of the plant and introduced encouraging improvement of the performance of the system as a whole. The concept of the modular ice-storage system was introduced through a control zoning strategy based on zonal orientation. It is believed that such strategy could lead to the modularisation of ice-storage systems. Additionally, the model was examined and tested in relation to load flattening and demonstrated promising enhancement in the shape of the load curve and demonstrated flattened demand curves through the employed strategy. When compared with measured data from existing buildings, the model showed potential for the techniques utilised to improve the load factor for office buildings.
机译:研究控制科威特电力需求的方法是本研究项目的主要目的和动机。科威特和海湾国家在办公室和大型商业建筑中广泛使用的用于室内制冷的空调是这些国家电力和电力消耗的主要部分。不断上升的发电成本和不断增长的消耗率不断要求建设新的发电厂。以节能操作策略的形式设计和执行需求侧管理(t DSM)是该研究项目的回应,旨在提供一种使用需求侧管理技术(称为需求均衡或负载转移)来纠正这种情况的方法。通过开发一种基于模型的预测性控制优化策略或集成式奇偶校验方法来预备冰热热风,对最先进的需求侧管理进行了研究。为了评估冰蓄冷辅助空调系统在夏季夏季高峰时段拉平需求曲线的潜力,在Matlab开发了供热,通风和空调(HVAC)工厂的模型。该模型使用基于模型的预测控制(MPQ)作为整个工厂的优化工具。开发了带有MPC的模型,以选择和决定哪种控制策略来运行集成式储冰HVAC设备。该模型成功优化了工厂的运营,并引入了令人鼓舞的系统整体性能改进。通过基于分区定向的控制分区策略,引入了模块化冰存储系统的概念。相信这种策略可以导致冰存储系统的模块化。此外,还对模型进行了有关负载扁平化的测试,并通过采用的策略展示了负载曲线形状的有希望的增强,并展示了扁平化的需求曲线。当与现有建筑物的测量数据进行比较时,该模型显示出了用于改善办公楼负荷率的技术的潜力。

著录项

  • 作者

    Batty W J; Al-Hadban Yehya;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 English
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