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An optimal control method for discrete variable outdoor air volume setpoint determination in variable air volume systems

机译:可变风量系统中确定离散室外风量设定点的最佳控制方法

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摘要

In multi-zone variable outdoor air (OA) volume air-conditioning systems, there is often a mismatch between OA volume flow supply and demand, because variable air volume (VAV) systems exhibit nonlinear, multivariable, and long delay characteristics. Traditional methods ensure indoor air quality (IAQ) by increasing OA volume flow, which leads to a waste of OA flow energy. To address this problem, an optimal control method for determining discrete variable OA volume flow setpoints, based on differential pressure control, is proposed in this study. In this method, changes in indoor CO2 concentration and the total air volume flow demand of terminals are regarded as constraints of OA volume flow setpoints. A Proportional-Integral (PI) calculation method and trial-and-error method are used to discretize continuous OA volume flow setpoints to increase system stability. Two types of experiments were conducted to compare the characteristics of the two discrete OA volume flow setpoint determining methods, and to verify the feasibility of our new approach. The results show that the OA volume flow control loop can be well fitted with other control loops of VAV systems, and ensure OA volume flow demand for a target area. The proposed method provides greater energy savings than maximum OA ratio control strategy (7%-22%) and typical on-demand ventilation method (6.1%), and better control performance than continuous OA volume flow setpoints control system. The PI calculation method is suitable for conditions with high IAQ requirements, while the trial-and-error method can be used for comfort air-conditioning systems to adjust the indoor environment.
机译:在多区域可变室外空气(OA)体积空调系统中,OA体积流量供需之间通常不匹配,因为可变空气量(VAV)系统具有非线性,多变量和长延迟特性。传统方法通过增加OA体积流量来确保室内空气质量(IAQ),这会浪费OA流量能量。为了解决这个问题,本研究提出了一种基于压差控制的确定离散变量OA流量设定点的最优控制方法。在这种方法中,室内CO2浓度的变化和终端的总风量需求被视为OA流量设定点的约束。比例积分(PI)计算方法和反复试验方法用于离散化连续OA体积流量设定点,以提高系统稳定性。进行了两种类型的实验,以比较两种离散OA体积流量设定点确定方法的特性,并验证了我们新方法的可行性。结果表明,OA体积流量控制回路可与VAV系统的其他控制回路很好地配合,并确保目标区域的OA体积流量需求。与最大OA比率控制策略(7%-22%)和典型的按需通风方法(6.1%)相比,该方法可提供更大的节能效果,并且比连续OA体积流量设定点控制系统具有更好的控制性能。 PI计算方法适用于具有较高IAQ要求的条件,而试错法可用于舒适型空调系统以调整室内环境。

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