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A Thermal Sensation Index for Real-Time Tuning and Energy-Optimal Control of HVAC Systems

机译:HVAC系统实时调节和能量最优控制的热感指标

摘要

In this paper we discuss and develop a thermal comfort index that addresses the limitations of applying thermal comfort indices to control applications. The derivation closely follows the derivation of PMV, but certain changes and simplifications make the index an explicit, linearly parameterized function of environmental variables. We show that the differences between the derivation of this index and the derivation of PMV do not reduce the accuracy of the index in comparison to PMV. Since this index is linearly parameterized, the parameters can be quickly and efficiently tuned in real time to reflect the thermal sensation of the specific occupant. Parameter tuning makes it possible to accurately predict the thermal sensation of the occupant without exact knowledge of the activity level or clothing insulation of the occupant when these two quantities are known to be constant. Additionally, the tuning process makes the thermal sensation prediction relatively insensitive to sensor location because biases and scaling errors are absorbed by the estimated parameters. Real-time parameter tuning is demonstrated experimentally for a seated, stationary occupant. The feasibility of using variable air flow and variable heat flow to regulate the thermal sensation index in a way that minimizes power consumption is investigated. The simplified index provides a quantitative means for determining the most energy efficient comfortable conditions. The analysis demonstrates that for low to moderate outdoor relative humidity there is an energy optimal combination of air flow and heat flow.
机译:在本文中,我们讨论并开发了一种热舒适指数,解决了将热舒适指数应用于控制应用的局限性。该推导紧随PMV的推导,但是某些更改和简化使该索引成为环境变量的显式线性参数化函数。我们表明,与PMV相比,该指数的推导与PMV的推导之间的差异不会降低指数的准确性。由于该指标是线性参数化的,因此可以快速有效地实时调整参数,以反映特定乘员的热感。当已知这两个量恒定时,参数调整可以准确预测乘员的热感觉,而无需确切了解乘员的活动水平或衣物隔热。此外,调整过程使热感预测对传感器的位置相对不敏感,因为估计的参数会吸收偏差和缩放比例误差。针对坐着的固定乘员,通过实验演示了实时参数调整。研究了使用可变空气流量和可变热量流量以最小化功耗的方式调节热感指标的可行性。简化指标为确定最节能的舒适条件提供了一种量化手段。分析表明,对于中低的室外相对湿度,空气流和热流是能量的最佳组合。

著录项

  • 作者

    Federspiel C. C.; Norford L.;

  • 作者单位
  • 年度 1992
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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