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A novel coupling control with decision-maker and PID controller for minimizing heating energy consumption and ensuring indoor environmental quality

机译:具有决策者和PID控制器的新型耦合控制,可最大程度地减少供暖能耗并确保室内环境质量

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Due to climate change, global energy crisis, and high-quality life requirement for people, decreasing building energy consumption and enhancing indoor environment quality through control of heating, ventilation, and air conditioning systems tend to be increasingly important. Therefore, favorable control methods for heating and ventilation systems are urgently necessary. In this work, a new coupling control with decision-maker was proposed, developed, and investigated; meanwhile, several demand controlled ventilation strategies combined with heating control method was compared considering heating energy consumption, thermal comfort, and indoor air quality. In order to properly model the service systems, the air change rates and thermal time constants have been first measured in a reference office installed with commonly applied bottom-hinged tilted windows in our low-energy building supplied by geothermal district heating. Then, simulations have been carried out across two typical winter days in the reference office. The results illustrate that the proposed combination of suitable heating and demand controlled ventilation coupling control methods with decision-maker and proportional-integral-derivative (PID) controller could greatly reduce heating consumption in the reference room during the office time: around 52.4% (4.4 kW h energy saving) per day in winter in comparison to a commonly suggested method of intensive and brief airing. At the same time, it could ensure indoor CO2 concentration to keep within the pre-set ranges (Pettenkofer limit: 1000 ppm) as well as low variations of indoor temperature (standard deviation (SD): 0.1 degrees C).
机译:由于气候变化,全球能源危机以及人们对高质量生活的要求,通过控制采暖,通风和空调系统来降低建筑能耗并提高室内环境质量变得越来越重要。因此,迫切需要用于加热和通风系统的有利控制方法。在这项工作中,提出,开发和研究了一种与决策者的新型耦合控制。同时,比较了考虑供暖能耗,热舒适性和室内空气质量的几种需求控制通风策略和供暖控制方法。为了正确地对服务系统进行建模,首先在由地热集中供热的低能耗建筑中安装了通常使用的底部铰链倾斜窗户的参考办公室中测量了换气速率和热时间常数。然后,在参考办公室进行了两个典型冬季的模拟。结果表明,所建议的将合适的供热和需求控制的通风耦合控制方法与决策者和比例积分微分(PID)控制器相结合,可以大大减少办公室在参考时间内的供热消耗:约52.4%(4.4与通常建议的密集通风和短暂通风相比,冬季每天节省kWh能耗。同时,它可以确保室内CO2浓度保持在预设范围内(Pettenkofer限值:1000 ppm)以及室内温度变化小(标准偏差(SD):0.1摄氏度)。

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