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MULTI-OBJECTIVE OPTIMAL DESIGN OF PASSIVE SUSPENSION SYSTEM WITH INERTER DAMPER

机译:带有Inerter阻尼器的被动悬架系统的多目标优化设计

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This paper presents a many-objective optimal design of a four-degree-of-freedom passive suspension system with an inerter device. In the optimization process, four objectives are considered: passenger's head acceleration (HA), crest factor (CF), suspension deflection (SD), and tire deflection (TD). The former two objectives are important for the health and comfort of the driver and the latter two quantify the suspension system performance. The spring k_s and damping c_s constants between the sprung mass and unsprung mass, the inertance coefficient B, and the tire spring constant k_y are considered as design parameters. The non-dominated sorting genetic algorithm (NSGA-II) is used to solve this optimization problem. The results show that there are many optimal trade-offs among the design objectives that could be applicable to suspension design in the industry.
机译:本文提出了一种具有惯性装置的四自由度被动悬架系统的多目标优化设计。在优化过程中,要考虑四个目标:乘客的头部加速度(HA),波峰因数(CF),悬架挠度(SD)和轮胎挠度(TD)。前两个目标对于驾驶员的健康和舒适度很重要,后两个目标量化了悬架系统的性能。簧上质量和簧下质量之间的弹簧常数k_s和阻尼c_s,惯性系数B和轮胎弹簧常数k_y被视为设计参数。非支配排序遗传算法(NSGA-II)用于解决此优化问题。结果表明,在设计目标之间存在许多最佳折衷,这些折衷可适用于工业中的悬架设计。

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