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Multivariable control of indoor air temperature and humidity in a direct expansion (DX) air conditioning (A/C) system

机译:直接膨胀(DX)空调(A / C)系统中的室内空气温度和湿度的多变量控制

摘要

Controlling indoor humidity at an appropriate level is very important since this affects occupants' thermal comfort and indoor air quality (IAQ). The paper presents an investigation on developing a multi-input multi-output (MIMO) control strategy for simultaneously controlling the indoor air temperature and humidity by varying the speeds of both compressor and supply fan in an experimental DX A/C system. The MIMO-based controller was designed based on the linearized dynamic model of the experimental DX A/C system. The Linear Quadratic Gaussian (LQG) technique was used in designing the MIMO-based controller. The controllability tests with respect to both the disturbance rejection capability and the command following capability were carried out to assess the control performance of MIMO controller. The results of disturbance rejection capability test showed that the MIMO control strategy can effectively maintain the indoor air temperature and humidity to their respective settings after an unmeasured heat load disturbance was imposed by simultaneously varying speeds of both the compressor and the supply fan of the DX A/C system. Furthermore, in the command following capability test for indoor air temperature, the test results showed that the indoor air temperature can be controlled to its new setting while indoor humidity remained unchanged. Similar test results were also observed in the command following capability test for indoor humidity. Therefore, the MIMO controller developed can effectively control indoor air temperature and humidity simultaneously by varying compressor speed and supply fan speed of the DX A/C system. Compared to the previous related studies using conventional on-off control method or single-input single-output (SISO) control strategy, which can only effectively control either air temperature or relative humidity, the MIMO controller can simultaneously control the indoor air temperature and humidity with adequate control sensitivity and accuracy. The application of MIMO control strategy developed can be extended to other HVAC systems in the future to improve their operating performance and energy efficiency.
机译:将室内湿度控制在适当的水平非常重要,因为这会影响乘员的热舒适性和室内空气质量(IAQ)。本文提出了研究开发一种多输入多输出(MIMO)控制策略的方法,该策略通过在实验性DX A / C系统中通过改变压缩机和送风机的速度来同时控制室内空气的温度和湿度。基于DX A / C实验系统的线性化动态模型,设计了基于MIMO的控制器。线性二次高斯(LQG)技术用于设计基于MIMO的控制器。进行了针对干扰抑制能力和命令遵循能力的可控性测试,以评估MIMO控制器的控制性能。干扰抑制能力测试的结果表明,在通过同时改变DX A的压缩机和供应风扇的速度施加不可测的热负荷干扰之后,MIMO控制策略可以有效地将室内空气的温度和湿度保持在各自的设置上/ C系统。此外,在室内空气温度命令跟踪能力测试中,测试结果表明,在室内湿度保持不变的情况下,可以将室内空气温度控制到新的设置。在室内湿度能力测试之后的命令中,也观察到了类似的测试结果。因此,通过改变DX A / C系统的压缩机速度和送风机速度,开发的MIMO控制器可以有效地同时控制室内空气的温度和湿度。与以前使用传统的开关控制方法或单输入单输出(SISO)控制策略的相关研究相比,后者只能有效地控制空气温度或相对湿度,而MIMO控制器可以同时控制室内空气的温度和湿度具有足够的控制灵敏度和准确性。将来开发的MIMO控制策略的应用可以扩展到其他HVAC系统,以提高其运行性能和能效。

著录项

  • 作者

    Qi Q; Deng S;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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