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首页> 外文期刊>International Journal of Automotive Technology >RELIABILITY-BASED DESIGN OPTIMIZATION OF AUTOMOTIVE SUSPENSION SYSTEMS
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RELIABILITY-BASED DESIGN OPTIMIZATION OF AUTOMOTIVE SUSPENSION SYSTEMS

机译:基于可靠性的汽车悬架系统设计优化

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摘要

Design variables for suspension systems cannot always be realized in the actual suspension systems due to tolerances in manufacturing and assembly processes. In order to deal with these tolerances, design variables associated with kinematic configuration and compliance characteristics of suspensions are treated as random variables. The reliability of a design target with respect to a design variable is defined as the probability that the design target is in the acceptable design range for all possible values of the design variable. To compute reliability, the limit state, which is the boundary between the acceptable and unacceptable design, is expressed mathematically by a limit state function with value greater than 0 for acceptable design, and less than 0 for unacceptable design. Through reliability analysis, the acceptable range of design variables that satisfy a reliability target is specified. Furthermore, through sensitivity analysis, a general procedure for optimization of the design target with respect to the design variables has been established.
机译:由于制造和装配过程中的公差,悬架系统的设计变量不能总是在实际的悬架系统中实现。为了应对这些公差,将与运动学配置和悬架柔顺特性相关的设计变量视为随机变量。设计目标相对于设计变量的可靠性定义为:对于设计变量的所有可能值,设计目标均处于可接受的设计范围内的概率。为了计算可靠性,极限状态是可接受和不可接受设计之间的边界,它是通过极限状态函数数学表示的,极限状态函数的值大于0(对于可接受的设计),小于0(对于不可接受的设计)。通过可靠性分析,可以确定满足可靠性目标的设计变量的可接受范围。此外,通过敏感性分析,建立了针对设计变量优化设计目标的一般程序。

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