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MODEL PREDICTIVE MOTION CUEING ALGORITHM FOR A TRUCK SIMULATOR

机译:用于卡车模拟器的模型预测运动提示算法

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The paper looks at the possibilities of applying a model predictive control (MPC) algorithm to control and optimize the motion cueing algorithm (MCA) employed in state-of-the-art simulators for the purposes of reproducing motion effects (in particular acceleration). Typically, MCAs feature a large number of parameters which need to be configured with respect to both the kinematic and dynamic limitations of the motion platform used and the human motion perception thresholds. When an MPC algorithm is employed, these constraints can be fully respected and the ultimate results can, at least in a sense, be considered optimal. The paper shows the possibilities of interlinking MPC with MCA to dynamically adjust the applicable constraints. In addition, all theoretical results will be verified by means of simulations. Since the research described in this paper has been conducted as part of an advanced truck simulator project pursued by the author the parameters chosen for all simulations respect the properties of the motion platform employed in this project.
机译:本文探讨应用模型预测控制(MPC)算法来控制和优化最先进的模拟器中采用的运动提示算法(MCA)的可能性,以便为再现运动效应(特别加速)。通常,MCAS具有大量参数,需要针对运动平台的运动和动态限制和人类运动感知阈值来配置。当采用MPC算法时,可以完全遵守这些约束,并且至少在某种意义上可以被认为是最佳的最终结果。本文显示了将MPC与MCA相互连接的可能性,以动态调整适用的约束。此外,所有理论结果都将通过模拟验证。由于本文描述的研究是作为由作者所追求的先进卡车模拟器项目的一部分,因此为所有模拟所选择的参数尊重该项目中使用的运动平台的属性。

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