论文标题

考虑室内空气质量的多区域HVAC系统的分布式控制

Distributed Control of Multi-zone HVAC Systems Considering Indoor Air Quality

论文作者

Yang, Yu, Srinivasan, Seshadhri, Hu, Guoqiang, Spanos, Costas J.

论文摘要

本文研究了一种可扩展的控制方法,用于多区加热,通风和空调(HVAC)系统,以优化维持热舒适和室内空气质量(IAQ)(由CO2)(由CO2)的能源成本。由于复杂的系统动力学,各种空间和时间耦合以及要协调的多个控制变量,因此在计算上具有挑战性。为了应对挑战,我们提出了一种具有上层和下层控制的两级分布式方法(TLDM)。上层计算区域质量流量,以保持最低的能源成本来维持区域热舒适度,然后较低级别的策略性调节区域质量流量和通风速率,以实现IAQ,同时保留上层级别的近节能量。由于上下计算都以分布式方式部署,因此所提出的方法是可扩展的,并且在计算上有效。该方法在节省能源成本中的近乎最佳性能是通过与集中式方法进行比较来证明的。此外,与现有的分布式方法的比较表明,我们的方法可以提供IAQ,而后者失败时,能源成本仅增加。此外,我们证明我们的方法优于IAQ管理的需求控制通风策略(DCV),其能源成本降低约为8-10%。

This paper studies a scalable control method for multi-zone heating, ventilation and air-conditioning (HVAC) systems to optimize the energy cost for maintaining thermal comfort and indoor air quality (IAQ) (represented by CO2) simultaneously. This problem is computationally challenging due to the complex system dynamics, various spatial and temporal couplings as well as multiple control variables to be coordinated. To address the challenges, we propose a two-level distributed method (TLDM) with a upper level and lower level control integrated. The upper level computes zone mass flow rates for maintaining zone thermal comfort with minimal energy cost, and then the lower level strategically regulates zone mass flow rates and the ventilation rate to achieve IAQ while preserving the near energy saving performance of upper level. As both the upper and lower level computation are deployed in a distributed manner, the proposed method is scalable and computationally efficient. The near-optimal performance of the method in energy cost saving is demonstrated through comparison with the centralized method. In addition, the comparisons with the existing distributed method show that our method can provide IAQ with only little increase of energy cost while the latter fails. Moreover, we demonstrate our method outperforms the demand controlled ventilation strategies (DCVs) for IAQ management with about 8-10% energy cost reduction.

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