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Fuzzy logic controller design for a small scale industrial hot air blower heating and ventilation system

机译:小型工业热风机加热通风系统的模糊逻辑控制器设计

摘要

In this paper, a single-input fuzzy logic controller (SIFLC) is designed and applied on a nonlinear heating and ventilation plant VVS-400 developed from Instrutek, Larvik, Norway. VVS-400 is modeled using Auto-regressive with exogenous input (ARX) model structure and linear black-box technique. The proposed SIFLC offers significant reduction in rule inferences and simplify the tuning of control parameters. Instead of using two input (e,e) in the conventional FLC, this method simplifies the number of input by deriving new solitary input variable known as signed distance, d To verify its effectiveness, this control method is stimulated and performs an online using System Identification approach while the real plant model is developed by interfacing the Real-time Windows Target toolbox in Matlab with real VVS-plant using data acquisition (DAQ) card PCI-1711. The SILFC provides several advantages over conventional FLC due to its simple inference rule mechanism, require very minimum tuning effort and minimizing the computational time to accomplish the controller algorithm. However, simulations and experiments validate the equivalency of both controllers. Results reveal that SIFLC and conventional FLC have almost similar output performance but SILFC found to be better than FLC due to its less computational time compared to conventional FLC.
机译:本文设计了一种单输入模糊逻辑控制器(SIFLC),并将其应用于挪威拉尔维克市Instrutek开发的非线性加热和通风设备VVS-400。 VVS-400使用具有外来输入(ARX)模型结构和线性黑盒技术的自动回归模型进行建模。提出的SIFLC大大减少了规则推论,并简化了控制参数的调整。代替在传统的FLC中使用两个输入(e,e),此方法通过推导新的孤立输入变量(称为有符号距离)来简化输入的数量。d为了验证其有效性,该控制方法被激励并使用System在线执行通过使用数据采集(DAQ)卡PCI-1711将Matlab中的Real-Time Windows Target工具箱与实际VVS-工厂接口来开发实际工厂模型时的识别方法。 SILFC由于其简单的推理规则机制而具有优于常规FLC的多个优点,需要非常少的调整工作,并且可以最小化计算时间来完成控制器算法。但是,仿真和实验验证了这两种控制器的等效性。结果表明,SIFLC和常规FLC具有几乎相似的输出性能,但由于与常规FLC相比,其计算时间短,因此SILFC优于FLC。

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