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Coupling Mechanism and Decoupled Suspension Control Model of a Half Car

机译:半轿车的耦合机构和分离悬架控制模型

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摘要

A structure decoupling control strategy of half-car suspension is proposed to fully decouple the system into independent front and rear quarter-car suspensions in this paper. The coupling mechanism of half-car suspension is firstly revealed and formulated with coupled damping force (CDF) in a linear function. Moreover, a novel dual dampers-based controllable quarter-car suspension structure is proposed to realize the independent control of pitch and vertical motions of the half car, in which a newly added controllable damper is suggested to be installed between the lower control arm and connection rod in conventional quarter-car suspension structure. The suggested damper constantly regulates the half-car pitch motion posture in a smooth and steady operation condition meantime achieving the expected completely structure decoupled control of the half-car suspension, by compensating the evolved CDF.
机译:提出了半汽车悬架的结构去耦控制策略,以将系统与本文的独立前后四分之一轿车悬浮液完全脱钩。首先揭示半轿厢悬架的耦合机构并在线函数中具有耦合阻尼力(CDF)。此外,提出了一种新的双阻尼器可控四分之一车悬架结构,以实现半汽车的间距和垂直运动的独立控制,其中建议在下控制臂和连接之间安装新添加的可控阻尼器钢杆在常规四分之一车悬架结构中。建议的阻尼器在平稳且稳定的操作条件下不断调节半汽车俯仰运动姿势,同时通过补偿进化的CDF来实现预期的完全结构去耦合控制半轿厢悬浮液。

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