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Application of Fuzzy Logic Temperature Controller for Water Bottle Industry

机译:模糊逻辑温度控制器在水瓶行业中的应用

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The mathematical modeling involves convectional controller which affect the performance non-Linear and complex control system of the Bottle water industry. The system instability can be overcome by using intelligent controller to control and Monitor water temperature within a specific period of time in order to avoid overshoot and absolute error, with better temperature tracking capability. However, most industry does not have accurate and reliable monitoring mechanism capable of sensing when the water Temperature increases. The fuzzy Logic is used to control the Temperature of Bottle water at difference time of operation. This operational failure can be overcome by designing a model that will monitor and control the water temperature process thereby improving temperature control in water bottle industry using Fuzzy Logic Controller. MATLAB Software was used to carry out simulations to develop Temperature control in Bottle water industry with aims of improving operational mechanism of the industry. This model can then be trained with result gotten from the mathematical model in order to monitor and control the Water Temperature. The result showed that Bottle water Temperature with and without Fuzzy Logic Controller were 85 0 C and 65 0 C respectively. The Temperature increased by 20 0C . With these results, it shows that using fuzzy Logic Controller gives a better result than when fuzzy logic is not used.
机译:数学建模涉及对流控制器,该对流控制器影响瓶装水行业的性能非线性和复杂控制系统。通过使用智能控制器来控制和监视特定时间段内的水温,可以避免系统不稳定性,从而避免过冲和绝对误差,并具有更好的温度跟踪功能。但是,大多数行业没有准确可靠的监视机制能够检测水温何时升高。模糊逻辑用于控制不同操作时间的瓶装水温度。通过设计一个可以监控和控制水温过程的模型,可以克服这种运行故障,从而可以使用模糊逻辑控制器改善水瓶行业的温度控制。为了改善瓶装水行业的运行机制,使用MATLAB软件进行了仿真,以开发瓶装水行业的温度控制。然后可以使用从数学模型获得的结果来训练该模型,以便监视和控制水温。结果表明,带和不带模糊逻辑控制器的瓶水温度分别为85 0 C和65 0C。温度升高20 0C。这些结果表明,与不使用模糊逻辑时相比,使用模糊逻辑控制器可获得更好的结果。

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