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Optimization of Automobile Suspension System Using Hybrid GSA Algorithm

机译:使用混合GSA算法优化汽车悬架系统

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In this paper Hybrid Genetic-Simulated Annealing Algorithm (GSA) is studied and applied to the suspension system of an automobile with two different case studies.Mathematical modelling of an automobile is done for passive suspension system.GA,S A and GSA were simulated using programming in MATLAB.First case study is based on the data of researcher in the field where GA was applied for optimization of automobile suspension system.Here SA,as well as Hybrid GSA are applied and compared with the results of GA.Convergences of the three methods are also plotted.In second case study an automobile model MARUTI 800 is considered.All the necessary parameters are calculated through measurements.The results shows required seat acceleration for current available springs of the automobile in field.For both the case studies the Hybrid GSA shows best results among the three.This can be performed before actual manufacturing of springs and automobile to check whether desired seat acceleration and ride comfort will achieve or not.If it is satisfied with the value of seat acceleration,decision would be made regarding manufacturing of springs with those values of stiffness and damping constants.
机译:在本文中,研究了杂交遗传模拟退火算法(GSA),并应用于具有两个不同案例研究的汽车的悬架系统。汽车对被动悬架系统进行了疗程建模。使用编程模拟了GA,SA和GSA。在Matlab.dirst案例研究基于该领域的研究人员的数据,其中Ga被应用于汽车悬架系统的优化。将SA以及杂交GSA应用,并与Ga的结果进行比较。这三种方法的计量相比还绘制了第二种案例研究,考虑了汽车模型Maruti 800.所有的必要参数通过测量来计算。结果显示了现场汽车电流可用弹簧所需的座椅加速度。案例研究杂交GSA显示这三个中的最佳效果。这可以在泉水和汽车的实际制造之前进行检查,以检查所需的座椅加速和乘坐C. Owtne将实现或不实现。如果满意座椅加速的价值,则将弹簧与刚度和阻尼常量的值的制造进行决定。

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