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Optimization of Construction of Tire Reinforcement by Genetic Algorithm

机译:遗传算法优化轮胎补强结构

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A new tire design procedure capable of determining the optimum tire construction was developed by combining a finite element method approach with mathematical programming and a genetic algorithm (GA). Both procedures successfully generated optimized belt structures. The design variables in the mathematical programming were belt angle and belt width. Using the merits of a GA which enabled the use of discrete variables, the design variables in the GA were not only the topology of the belt and belt angle but also the belt material. Furthermore, a discrete objective function such as the number of parts could be optimized in the GA. The optimized structure obtained by the GA was verified to increase the cornering stiffness more than 15 percent as compared with the control structure in an indoor drum test.
机译:通过将有限元方法与数学编程和遗传算法(GA)相结合,开发了一种能够确定最佳轮胎构造的新轮胎设计程序。两种方法均成功地产生了优化的皮带结构。数学编程中的设计变量是皮带角度和皮带宽度。利用遗传算法的优点,可以使用离散变量,遗传算法中的设计变量不仅是皮带和皮带角度的拓扑结构,而且还是皮带材料。此外,可以在GA中优化离散目标函数(例如零件数)。经验证,通过GA获得的优化结构与室内鼓测试中的控制结构相比,可将转弯刚度提高15%以上。

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