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Advanced Estimation Techniques for Vehicle System Dynamic State: A Survey

机译:车辆系统动态状态的高级估计技术:调查

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In order to improve handling stability performance and active safety of a ground vehicle, a large number of advanced vehicle dynamics control systems—such as the direct yaw control system and active front steering system, and in particular the advanced driver assistance systems—towards connected and automated driving vehicles have recently been developed and applied. However, the practical effects and potential performance of vehicle active safety dynamics control systems heavily depend on real-time knowledge of fundamental vehicle state information, which is difficult to measure directly in a standard car because of both technical and economic reasons. This paper presents a comprehensive technical survey of the development and recent research advances in vehicle system dynamic state estimation. Different aspects of estimation strategies and methodologies in recent literature are classified into two main categories—the model-based estimation approach and the data-driven-based estimation approach. Each category is further divided into several sub-categories from the perspectives of estimation-oriented vehicle models, estimations, sensor configurations, and involved estimation techniques. The principal features of the most popular methodologies are summarized, and the pros and cons of these methodologies are also highlighted and discussed. Finally, future research directions in this field are provided.
机译:为了提高处理地面车辆的处理稳定性和主动安全性,大量先进的车辆动力学控制系统 - 例如直接偏航控制系统和主动前转向系统,特别是先进的驾驶员辅助系统 - 朝向连接和最近已经开发和应用了自动驾驶车辆。然而,车辆主动安全动态控制系统的实际效果和潜在性能大大依赖于基本车辆状态信息的实时知识,这难以直接在标准汽车中衡量,因为两种技术和经济原因。本文介绍了对车辆系统动态状态估计的开发和最近的研究进展的综合技术调查。最近文学中的估计策略和方法的不同方面分为两种主要类别 - 基于模型的估计方法和基于数据驱动的估计方法。从估计导向的车辆模型,估计,传感器配置和涉及估计技术的角度,每个类别进一步分为几个子类别。总结了最流行的方法的主要特征,这些方法的利弊也被突出显示并讨论。最后,提供了该领域的未来研究方向。

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