基于模糊逻辑的自行车车架预测技术

R. Syam, La Ode Asman Muriman
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引用次数: 0

摘要

一般来说,一个合适尺寸的车架会让骑自行车的人感到舒适。本研究旨在利用模糊逻辑对自行车车架尺寸的仿真系统进行预测。试验方法采用模拟试验。在本研究中,将使用Matlab语言对模糊逻辑进行仿真,以测试其性能。Mamdani模糊逻辑采用3个变量和1个输入输出变量。三角函数用于输入和输出。控制器采用最大-最小组成的马达尼式设计,采用重心法进行除雾。结果表明,高度、内缝和曲柄尺寸产生的合适车架尺寸与舒适性相关。身高范围在142厘米到201厘米之间。内缝的范围在64厘米到97厘米之间。曲柄的尺寸范围在175毫米和180毫米之间。仿真结果的帧尺寸范围在13英寸到22英寸之间。利用模糊逻辑可以预测适合骑行者的自行车车架尺寸。
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Bicycle Frame Prediction Techniques with Fuzzy Logic Method
—In general, an appropriate size bike frame would get comfort to the rider while biking. This study aims to predict the simulation system on the bike frame sizes with fuzzy logic. Testing method used is the simulation test. In this study, fuzzy logic will be simulated using Matlab language to test their performance. Mamdani fuzzy logic using 3 variables and 1 output variable intake. Triangle function for the input and output. The controller is designed in the type mamdani with max-min composition and the method deffuzification using center of gravity method. The results showed that height, inseam and Crank Size generating appropriate frame size for the rider associated with comfort. Has a height range between 142 cm and 201 cm. Inseam has a range between 64 cm and 97 cm. Crank has a size range between 175 mm and 180 mm. The simulation results have a range of frame sizes between 13 inches and 22 inches. By using the fuzzy logic can be predicted the size frame of bicycle suitable for the biker.
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