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Hybrid Fuzzy plus PID Controller of Hydro-Diffusion Steam Distillation Essential Oil Extraction System: Design and Performance Evaluation

机译:水力扩散蒸汽蒸馏精油提取系统的混合模糊加PID控制器:设计与绩效评估

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摘要

Steam temperature of extraction plays a major role in steam distillation essential oil extraction. The process variable gives large effect to the output yield and quality of the oils. This study proposed a robust hybrid fuzzy combined with PID (HFPID) controller to control the steam temperature in the extraction process. The controller was attached to a hydro-diffusion to overcome the current issue facing by conventional steam distillation. The hydro-diffusion steam distillation plant enhances oil recovery by minimizing oil waste in boiling water. HFPID controller is expected to improve system performance at transient and steady state in order to promises the best quality of essential oil. The temperature control was achieved by controlling the voltage fed to the heater ranging from OV to 5V via digital-to-analogue converter (DAC). The HFPID controller using 49 rules was compared with the conventional PID controller in term of rise time, settling time, percentage overshoot (%OS) and RMSE. From the result, the real time performance of HFPID controller reveals that this controller is compatible for the system because able to minimize the output error at transient state and gave the faster response with small overshoot, settling time and RMSE.
机译:汽油温度在蒸汽蒸馏精油提取中起主要作用。该过程变量对油的产量和质量产生了很大的影响。该研究提出了一种与PID(HFPID)控制器结合的强大的混合模糊,以控制提取过程中的蒸汽温度。控制器附着在水力扩散到常规蒸汽蒸馏中克服当前问题。水力扩散蒸汽蒸馏装置通过最小化沸水中的油废物来增强储油。 HFPID控制器有望改善瞬态和稳定状态的系统性能,以便承诺最优质的精油质量。通过通过数模转换器(DAC)控制进料到从OV至5V的加热器的电压来实现温度控制。将使用49规则的HFPID控制器与常规PID控制器在上升时间,稳定时间,过冲(%OS)和RMSE的百分比上进行比较。从结果中,HFPID控制器的实时性能显示,该控制器对系统兼容,因为能够最小化瞬态状态下的输出误差,并提供较快的过冲,建立时间和RMSE的速度更快。

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