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Design and Simulation of Fuzzy Logic Based Temperature Control for a Mixing Process in Therapeutic Pool

机译:基于模糊逻辑的治疗池混合过程温度控制的设计与仿真

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Stroke is one cause of the most deaths, in which one way of handling stroke can be done with hydrotherapy. Hydrotherapy is a therapy that is done in the therapeutic pool which is filled with warm water in temperature 31°-34° C. When in the warm water, body burden becomes lighter, so the stroke patients with impaired movement of the body can train the nerves and muscles in order to restore the function of these organs. However, the warm water that is used for the therapy is produced by the heater that requires much electrical energy. This research discussed how to use solar energy to produce hot water using Indirect Evacuated Tube Solar Water Heater systems and make the control system for controlling the mixing process between the hot and cold water by using the Fuzzy Logic Control of the Mamdani method. Therapeutic pool system will be modeled using Simulink. Modeling the mixing process is made on the basis of mass balance and energy balance equations. Then the system will be simulated with interrupted condition and gets set value changes in a particular time. The FLC is successfully reached and maintained steady to a set value. The results will be compared to the performance of the one with Proportional Integral Derivative controller.
机译:中风是导致死亡最多的原因之一,通过水疗可以解决中风的一种方法。水疗是在充满温度为31°-34°C的温水的治疗池中进行的治疗。在温水中时,身体负担变轻,因此身体运动受损的中风患者可以训练神经和肌肉,以恢复这些器官的功能。但是,用于治疗的温水是由需要大量电能的加热器产生的。这项研究讨论了如何使用间接抽空管太阳能热水器系统利用太阳能产生热水,以及如何通过使用Mamdani方法的模糊逻辑控制来建立控制冷热水混合过程的控制系统。治疗池系统将使用Simulink进行建模。基于质量平衡和能量平衡方程对混合过程进行建模。然后,系统将在中断条件下进行仿真,并在特定时间内获得设置值的更改。成功达到FLC并将其稳定保持在设定值。将该结果与比例积分微分控制器的性能进行比较。

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