首页> 外文期刊>International Journal of Automotive Technology >RESEARCH ON CONTROL STRATEGY FOR DIFFERENTIAL STEERING SYSTEM BASED ON H MIXED SENSITIVITY
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RESEARCH ON CONTROL STRATEGY FOR DIFFERENTIAL STEERING SYSTEM BASED ON H MIXED SENSITIVITY

机译:基于H混合灵敏度的转向系统的控制策略研究。

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摘要

The differential steering system (DSS) of electric wheel vehicle gets rid of the restrictions of traditional steering system completely. As an ideal steering technology, it not only realizes the perfect combination of the road feel and the steering portability, but also realizes the harmony and unification between the steering maneuverability and safety. The structure and basic theory of the DSS of electric wheel vehicle are discussed in this paper. Based on these, the dynamic model of the steering system is built. Considering of the uncertainties and disturbances existing in the model, the H_∞ mixed sensitivity control theory is applied to achieve better tracking performance and road feel in the process of steering. Then, a H_∞ mixed sensitivity controller is designed to restrain the effect of the road disturbance and model uncertainties. The simulation results indicate that the DSS with the designed controller can effectively restrain the effect of noises and disturbances caused by random motivation from road, torque sensor measurement and model parameter uncertainty, and enable the driver to obtain satisfactory road feel.
机译:电动轮车辆的差速转向系统(DSS)完全摆脱了传统转向系统的限制。作为一种理想的转向技术,它不仅实现了道路感觉和转向便携性的完美结合,而且实现了转向操纵性和安全性之间的和谐统一。论述了电动轮汽车DSS的结构和基本原理。基于这些,建立了转向系统的动态模型。考虑到模型中存在的不确定性和干扰性,应用H_∞混合灵敏度控制理论在转向过程中获得更好的跟踪性能和道路感觉。然后,设计了一种H_∞混合灵敏度控制器来抑制道路干扰和模型不确定性的影响。仿真结果表明,采用所设计的控制器的DSS能够有效抑制道路随机动机,扭矩传感器测量和模型参数不确定性引起的噪声和干扰的影响,使驾驶员获得令人满意的道路感觉。

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