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Review of Optimal Energy Management Applied on Ice Thermal Energy Storage for an Air Conditioning System in Commercial Buildings

机译:最佳能源管理在商业建筑空调系统的冰热能存储中的应用综述

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摘要

This paper investigates the cost saving potentials of energy for cooling loads in the commercial buildings using a real-time optimization control strategy capable of efficiently managing an operation of the (ITES) Ice Thermal Energy Storage for building's HVAC (Heating, Ventilation and Air Conditioning) system. The ITES is a Thermal Energy Storage (TES) system, which reduces the cost of energy in HVAC systems. Reduction in the cost of energy is achieved by shifting the cooling load from the peak and standard periods to the off-peak periods, with the aid of stored ice, which is produced when the energy cost is affordable and discharging when the cooling demand is high, particularly at expensive tariff rates. The challenge is that, most of the existing ITES systems, particularly in South Africa, are not optimal in operation. The conventional system should be optimally controlled to a higher accuracy. Based on investigations, a preferred accuracy could be achieved, with some comparisons and validations of results, by utilization of real-time control and optimisation tools, such as Fuzzy logic, Neural network, Closed-loop and Model Predictive Control (MPC). Effective utilization of ITES allows a further advantage in the management of the off-peak tariffs and consumers' demands, in accordance with the Time of Use (TOU) and maximum demand. Climate changes, installation, payback costs and other objective functions are required as additional options to the improved utilisation and design of the ITES system. The findings from the review and analysis of technologies and approaches to optimisation should benefit improvisation of the ITES in future applications.
机译:本文研究了一种实时优化控制策略,该策略可以有效管理用于建筑物HVAC(供暖,通风和空调)的(ITES)冰蓄热装置的运行,从而研究了商业建筑物中用于冷却负荷的能源的成本节约潜力。系统。 ITES是一种热能存储(TES)系统,可降低HVAC系统中的能源成本。通过将冷却负荷从高峰时段和标准时段转移到非高峰时段,从而实现了能源成本的降低,这种存储冰是在能源成本可承受时产生的,而在冷却需求较高时排放的,尤其是昂贵的关税税率。面临的挑战是,大多数现有的ITES系统,尤其是在南非,并不是最佳运行状态。常规系统应被最佳地控制到更高的精度。根据调查结果,通过使用实时控制和优化工具,例如模糊逻辑,神经网络,闭环和模型预测控制(MPC),可以对结果进行一些比较和验证,从而获得较好的精度。根据使用时间(TOU)和最大需求,有效利用ITES可以在管理非高峰资费和消费者需求方面进一步取得优势。气候变化,安装,投资回收成本和其他目标功能是改善ITES系统利用率和设计的其他选择。对技术和优化方法进行审查和分析后得出的结论应有益于ITES在以后的应用中的即兴创作。

著录项

  • 来源
    《Open Innovations Conference》|2018年|286-293|共8页
  • 会议地点 Johannesburg(ZA)
  • 作者单位

    Mechanical and Mechatronics Engineering Department Central University of Technology Free State Bloemfontein South Africa;

    Electrical Electronic and Computer Engineering Central University of Technology Free State Bloemfontein South Africa;

    Department of Electrical Engineering Centre for the Development of Green Technologies Mangosuthu University of Technology Durban South Africa;

  • 会议组织
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    Buildings; Cooling; Optimization; Ice; Real-time systems; Valves;

    机译:建筑物;冷却;优化;冰;实时系统;阀门;

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