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Adaptive Steam Temperature Regulation for Essential Oil Extraction Process

机译:精油提取过程中的自适应蒸汽温度调节

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Essential oil is volatile and sensitive to excessive heat. Many studies had shown that temperature during extraction process had a great impact on the oil quality. Despite of that, until now there are very few research had been published on the control development of essential oil extraction system. Hence, this study was commenced particularly on the development of a regulated essential oil extraction system using self-tuning control. A self-tuning control was applied using pole-assignment method to regulate the steam temperature throughout the extraction process. Combination of controller poles in real and imaginary axis may influence the closed-loop response so that the steam can reach the set point faster but yet with minimal overshoot. Extensive analysis was done by simulation in order to understand the effect of the poles location and also the selection of sampling time over the closed-loop response. Outcome from the simulation was applied on the real process where the controller produced satisfactory result as expected. The controller was able to regulate the steam temperature at a desired level and maintained within ±2% output boundary.
机译:香精油易挥发且对过热敏感。许多研究表明,提取过程中的温度对油品质有很大影响。尽管如此,到目前为止,关于精油提取系统的控制开发的研究还很少。因此,这项研究特别是在使用自整定控制技术开发可调节的精油提取系统上开始的。使用磁极分配方法应用自整定控制来调节整个萃取过程中的蒸汽温度。实轴和虚轴上控制器极点的组合可能会影响闭环响应,因此蒸汽可以更快地到达设定点,但过冲最小。通过仿真进行了广泛的分析,以了解极点位置的影响以及在闭环响应上的采样时间选择。模拟的结果应用于实际过程,在该过程中,控制器产生了预期的令人满意的结果。控制器能够将蒸汽温度调节至所需水平,并保持在±2%的输出范围内。

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