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A model-based feed-forward controller scheme for accurate chilled water temperature control of inlet guide vane centrifugal chillers

机译:一种基于模型的前馈控制器方案,用于准确的入口导向叶片离心冷却器的精确冷却水温控制

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Capacity control in most commercial centrifugal chillers is achieved by inlet guide vanes, which are activated by the leaving chilled water temperature sensor. Due to mechanical reasons, vane control is done discretely, and not continuously. The control module compares the value provided by the temperature sensor to pre-set control band values, and if those bands are exceeded, it sends a signal to the vane control motor to adjust the vane position by one step that could be upwards or downwards. The advantage of this type of discrete control method is its simplicity. Normally, the accuracy in the outlet chilled water temperature is of the order of 0.5°C, which is acceptable for normal cooling plants such as used in office buildings. However, there are applications such as in pharmaceutical processes, mechanics labs, or instances in chemical processes where more accurate control is required (sometimes as low as 0.05°C). This paper proposes a simple method to achieve such tight control without any hardware modifications. The basis of this method is a transient physical inverse model of the refrigerant boiling process in the evaporator, in conjunction with a feed-forward control scheme. The model parameters need to be identified from monitored data since they are chiller-specific. This paper describes the model, and applies it to one-minute monitored data from an actual chiller plant of 1580 kW (450 Tons). It is demonstrated that for this specific chiller such a control scheme has the potential to improve control accuracy by about 28% as compared to the traditional control method.
机译:大多数商业离心式冷却器中的容量控制通过入口导向叶片实现,该叶片通过离开的冷却水温传感器激活。由于机械原因,叶片控制是谨慎的,而不是连续完成的。控制模块将温度传感器提供的值与预先设置的控制带值进行比较,并且如果超过这些频带,则将信号发送到叶片控制电动机,以便通过可以向上或向下的步骤调节叶片位置。这种离散控制方法的优点是其简单性。通常,出口冷却水温的精度为0.5°C的顺序,这对于正常的冷却设备如在办公建筑物中使用。然而,存在诸如药物过程,机械实验室或化学过程中的实例中的应用,其中需要更准确的控制(有时低至0.05°C)。本文提出了一种在没有任何硬件修改的情况下实现这种紧密控制的简单方法。该方法的基础是蒸发器中制冷剂沸腾过程的瞬态物理逆模型,结合前馈控制方案。由于它们是冷却器特定的,因此需要从监控数据中识别模型参数。本文介绍了该模型,并将其应用于来自1580 kW的实际冷冻机工厂的一分钟监测数据(450吨)。结果证明,与传统的控制方法相比,这种特定冷却器这样的控制方案具有提高控制精度的可能性约28%。

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