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Mathematical modeling and development of intelligent controllers for ameliorating the performance of Single Fluid Heat Transfer System using LabVIEW

机译:使用LabVIEW改善单流体传热系统性能的智能控制器的数学建模和开发

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To optimize cost and space in the pharmaceutical industry, it is desirable to heat and cool the utility fluid from the same equipment. The heat transfer for both heating and cooling is done using a single liquid. The system implemented with this concept is called Single Fluid Heat Transfer System (SFHTS). In this paper an actual SFHTS used by a pharmaceutical major company is considered. The essential objective is to eliminate overshoot and achieve set point in the shortest time possible for both thermal transfer unit and level control unit of SFHTS. Mathematical model of the real time SFHTS was developed and simulated using LabVIEW software. Tuned PI, PID and Sliding Mode Control were applied to the heating and cooling module (Thermal Transfer Module) and semi-automated level control module of the SFHTS. The results showed that all the controllers considered here aided in reaching the set point. However, the quantified results also denote that the swiftness and accuracy of the Sliding Mode Controller, the attributes required for faster settling time and overshoot elimination, was better than that of PI and PID Controllers. Hence Sliding Mode Controller was recommended for the thermal transfer module and semi-automated level control module of SFHTS.
机译:为了在制药工业中优化成本和空间,需要加热和冷却来自同一设备的工作流体。使用单一液体完成加热和冷却的热传递。以此概念实现的系统称为单流体传热系统(SFHTS)。在本文中,考虑了制药大公司使用的实际SFHTS。基本目标是消除SFHTS的热传递单元和液位控制单元的过冲并在最短的时间内达到设定点。实时SFHTS的数学模型是使用LabVIEW软件开发和仿真的。调整后的PI,PID和滑模控制已应用于SFHTS的加热和冷却模块(热传递模块)和半自动液位控制模块。结果表明,此处考虑的所有控制器均有助于达到设定点。但是,量化结果还表明,滑模控制器的快速性和准确性(较快的建立时间和消除过冲所需的属性)优于PI和PID控制器。因此,推荐将滑动模式控制器用于SFHTS的热传递模块和半自动液位控制模块。

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