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Research on a novel DDC-based capacity controller for the direct-expansion variable-air-volume A/C system

机译:直接膨胀变风量空调系统新型基于DDC的容量控制器的研究

摘要

A direct-expansion (DX) variable-air-volume (VAV) air-conditioning (A/C) system consists of a VAV air-distribution sub-system and a DX refrigeration plant. This paper reports in detail on a novel capacity controller developed for the DX VAV A/C system to regulate its compressor speed and hence its cooling capacity. The capacity controller consisted of both a numerical calculation algorithm (NCA), which was fundamentally based on the principle of energy balance using a number of real-time measured system's operating parameters, and a dead-band for decoupling the control actions from both the capacity controller and a conventional PI feedback controller for regulating the opening of an electronic expansion valve (EEV) in the refrigeration plant. To study the feasibility of the capacity controller, an experimental rig for the DX VAV A/C system having two conditioned spaces was built and experimental tests were carried out. The test results showed that using the capacity controller, the cooling capacity of the system's refrigeration plant can be accurately and continuously regulated and the supply air temperature well maintained at its desired value. The desirable independent zoning-control for space air temperatures can be successfully achieved by the DX VAV A/C system and the control performance for air temperatures in the conditioned space was highly satisfactory.
机译:直接膨胀(DX)变风量(VAV)空调(A / C)系统由VAV空气分配子系统和DX制冷设备组成。本文详细报告了为DX VAV A / C系统开发的新型容量控制器,以调节其压缩机速度,从而调节其冷却能力。容量控制器由数值计算算法(NCA)和死区组成,该算法基于能量平衡原理,该算法使用大量实时测量的系统运行参数,死区用于将控制动作与两个容量解耦控制器和传统的PI反馈控制器,用于调节制冷设备中电子膨胀阀(EEV)的开度。为了研究容量控制器的可行性,建立了具有两个条件空间的DX VAV A / C系统的试验台,并进行了实验测试。测试结果表明,使用容量控制器,可以精确,连续地调节系统制冷设备的制冷量,并且将送风温度很好地保持在期望值。 DX VAV A / C系统可以成功实现对空间空气温度的理想独立分区控制,并且对空调空间的控制性能非常令人满意。

著录项

  • 作者

    Chen W; Deng S;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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