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Dynamic tire force control for light-heavy duty truck using semi active suspension system

机译:使用半主动悬挂系统的轻型卡车动态轮胎力控制

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Truck suspension system could reduce cab vibration as well as road damage. A number of methods are engaged to promote truck performance, such active and semi active control. With the purpose of reducing dynamic tire force, this paper presents a simulation analysis of a semi active suspension control for light-heavy duty truck, the controller scheme known as Ground Semi Active Damping Force Estimator (gSADE). A famous tire force control oriented algorithm for heavy vehicle suspension control known as Groundhook (GRD) also has been studied. Thus, the objective of this paper is to investigate the effectiveness of the gSADE algorithm compared to GRD and passive system. These algorithms are applied to a full light-heavy duty truck models, and the simulation model was developed and simulated using MATLAB Simulink software. Ride test was conducted using random road excitation at three different speeds, and the simulation results of gSADE, GRD and passive system are compared and analyzed. The simulation results showed that the gSADE control is able to reduced tire force significantly compared to GRD control and passive system.
机译:卡车悬架系统可以减少驾驶室振动以及道路损坏。采取了许多方法来提高卡车的性能,例如主动控制和半主动控制。为了减少动态轮胎力,本文对轻型卡车的半主动悬架控制进行了仿真分析,该控制器方案称为地面半主动阻尼力估算器(gSADE)。还研究了著名的面向轮胎力控制的重型车辆悬架控制算法,称为Groundhook(GRD)。因此,本文的目的是研究与GRD和被动系统相比,gSADE算法的有效性。这些算法被应用于完整的轻型卡车模型,并使用MATLAB Simulink软件开发并仿真了该仿真模型。使用三种不同速度的随机道路激励进行了骑行测试,并对gSADE,GRD和被动系统的仿真结果进行了比较和分析。仿真结果表明,与GRD控制和被动系统相比,gSADE控制能够显着降低轮胎力。

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