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Integrated design of a quarter-car semi-active suspension system using a convex integrated design method

机译:使用凸集成设计方法的四分之一车半主动悬架系统集成设计

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摘要

In this paper, a new integrated design method - the convex integrated design (CID) method - is introduced and applied to the design of a semi-active suspension system. The closed-loop system is required to simultaneously satisfy four closed-loop performance specifications: car body acceleration, suspension deflection, tyre dynamic load and control effort. With a simple two-stage algorithm, the mechanical structure design parameter, as the stiffness of the suspension spring in the semi-active suspension system, and the closed-loop controller are determined with the CID method. This leads to a closed-loop suspension system which in simulation, is shown to satisfy all four closed-loop performance specifications. Then the suspension system is redesigned with two closed-loop performance specifications, car body acceleration and energy of control effort, and through experimentation, the closed-loop performance is verified on suspension test bed. Both simulation and experimental results verify the effectiveness of the CID method, with two closed-loop performance specifications.
机译:本文介绍了一种新的集成设计方法-凸集成设计(CID)方法,并将其应用于半主动悬架系统的设计。要求闭环系统同时满足四个闭环性能规格:车身加速度,悬架挠度,轮胎动载荷和控制力度。通过简单的两阶段算法,使用CID方法确定机械结构设计参数(如半主动悬架系统中的悬架弹簧的刚度)和闭环控制器。这导致了一个闭环悬挂系统,该系统在仿真中显示为满足所有四个闭环性能规格。然后对悬架系统进行了重新设计,使其具有两个闭环性能规格,即车身加速度和控制力,并通过试验在悬架试验台上验证了闭环性能。仿真和实验结果均通过两个闭环性能指标证明了CID方法的有效性。

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