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Design and Implementation of a Fuzzy logic based controller for refrigerating systems

机译:用于制冷系统模糊逻辑控制器的设计与实现

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This paper describes an intelligent the temperature control at a desired level in a refrigerator. The control works on the basis of modeling a thermostatic appliance and the use of fuzzy logic. A refrigeration system control- device using fuzzy logic for controlling a plurality of refrigeration compressors such that the closest capacity is selected to match the load to each of a plurality of evaporators comprising, a control having an input adapted to be connected to a means to sense the temperature in the controlled space wherein a control signal is indicative of the maximum refrigeration load of the controlled space, a means for determining whether the primary central variable in said space is above or below a single predetermined desired 'target. Thermostatically simulated and fuzzy controlled model are presented successively. The latter is set-up on the basis of the Mamdani's type of fuzzy rules. MATLAB, SIMULINK and Fuzzy Logic TOOLBOX (FLT) are the programming environments used for realization of the model The principal aim in designing the control is to assure the fastest and best transition possible from an analogue to digital control of the refrigerating, appliance, which represents the basis of a functional expansion demanded by the present market.
机译:本文介绍了冰箱中所需水平的智能控制。该控制基于建模恒温器具和模糊逻辑的使用。使用用于控制多个制冷压缩机的模糊逻辑的制冷系统控制装置,使得选择最接近的容量以将负载与多个蒸发器中的每一个匹配,该蒸发器包括控制,该控制具有适于连接到感测的装置的输入控制信号中的温度,其中控制信号指示受控空间的最大制冷负载,一种用于确定所述空间中的主中央变量是否高于或低于单个预定期望的目标的装置。恒温模拟和模糊控制模型连续呈现。后者是根据Mamdani的模糊规则的类型设置的。 MATLAB,Simulink和模糊逻辑工具箱(FLT)是用于实现模型的编程环境,主体设计控制的主体目标是确保从模拟到数字控制的最快和最佳的转换,所代表的设备目前市场要求的功能扩展的基础。

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