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Automated feedback control of an inhalation exposure system with discrete sampling intervals: testing, performance, and modeling.

机译:具有离散采样间隔的吸入暴露系统的自动反馈控制:测试,性能和建模。

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摘要

The application of a proportional-integral-derivative (PID) control algorithm to an inhalation exposure system using a building automation system is described. Previous studies had utilized a control system in which concentration was monitored continuously and adjustments to the generator were made on a continuous basis. In this system, benzene vapor was generated into a chamber, and a gas chromatograph was used to measure the concentration in a chamber at discrete 30-min intervals. Thus only limited opportunities were available to sample and adjust the vapor generator flow rate. A series of tests were conducted in which the generator was operated without control, with control, with an additional load, and with nonoptimal settings. The results showed that the PID control loop could function effectively to restore a system back to the target set point, even with an additional load on the system. With nonoptimal control settings, the system showed oscillatory behavior. A model to simulate operation of the chamber was developed on a spreadsheet program. The model was accurate at simulating the various testing scenarios and useful for selecting the proper control settings. A PID feedback control system operating with a concentration monitoring system that sampled on a 30-min cycle was shown to produce exposures that were accurate in matching the target set point and maintaining a constant concentration.
机译:描述了比例积分微分(PID)控制算法在使用楼宇自动化系统的吸入暴露系统中的应用。先前的研究使用了一个控制系统,该系统中的浓度被连续监测,并且对发生器的调节是连续进行的。在该系统中,苯蒸气进入腔室,然后使用气相色谱仪以不连续的30分钟间隔测量腔室内的浓度。因此,只有有限的机会可用于采样和调整蒸汽发生器的流速。进行了一系列测试,其中发电机在无控制,有控制,有额外负载且设置非最佳的情况下运行。结果表明,即使在系统上增加了负载,PID控制回路也可以有效地将系统恢复到目标设定值。在非最佳控制设置下,系统显示出振荡行为。在电子表格程序上开发了一个模拟腔室运行的模型。该模型在模拟各种测试场景时非常准确,并且对于选择适当的控制设置很有用。显示了与以30分钟为周期进行采样的浓度监控系统一起运行的PID反馈控制系统,其产生的曝光量可以准确地匹配目标设定值并保持恒定的浓度。

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