首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Frequency domain modeling, analysis and verification of electro-hydraulic servo steering system for heavy vehicles
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Frequency domain modeling, analysis and verification of electro-hydraulic servo steering system for heavy vehicles

机译:重型车辆电液伺服转向系统的频域建模,分析与验证

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摘要

The electro-hydraulic servo steering system is one of the core components of a heavy vehicle, and frequency response characteristics of this system are essential to guarantee the vehicle flexibility. However, it is difficult to establish frequency domain model directly for the frequency response characteristics analysis due to the strong nonlinearity of steering trapezoidal mechanism and hydraulic power system in electro-hydraulic servo steering system. This paper proposes a simplified linearization analysis method for the electro-hydraulic servo steering system. By variable substitution defining the load flow and load pressure, and linear fit between double tire angles and cylinder displacement, the original model is simplified to a frequency domain model. Based on this model, the essential frequency response characteristics and the effects of key parameters to electro-hydraulic servo steering system can be obtained. Through the sweep frequency response analysis, the linearized frequency domain model is compared with the nonlinear time domain model and the actual test system, respectively. As shown in Bode plots, the amplitude-frequency phase-frequency characteristic curves of models match well, which verifies linearization analysis method and linear frequency domain model. The key parameters affecting the system frequency domain characteristics are the valve flow gain, the area of cylinder rodless and rod chamber, and the linearization coefficient between the left and right tire angles and so on. The electro-hydraulic servo steering system bandwidth is only 7.38 rad/s (1.17 Hz). This research is helpful for the design and optimization of heavy vehicle dynamic steering system.
机译:电液伺服转向系统是重型车辆的芯部件之一,该系统的频率响应特性对于保证车辆灵活性至关重要。然而,由于转向梯形机构和电动液压伺服转向系统中的转向梯形机构和液压动力系统的强非线性,难以建立频域模型。本文提出了一种用于电液伺服转向系统的简化线性化分析方法。通过定义负载流量和负载压力的可变替换,并且在双轮胎角度和气缸位移之间线性配合,原始模型被简化到频域模型。基于该模型,可以获得基于该模型的基本频率响应特性和关键参数对电液伺服转向系统的影响。通过扫描频率响应分析,分别与非线性时域模型和实际测试系统进行了线性化频域模型。如Bode图所示,模型的幅度相位频率特性曲线匹配井,这验证了线性化分析方法和线性频率域模型。影响系统频率域特性的关键参数是阀流量增益,圆柱形区域和杆腔,左右轮胎角度之间的线性化系数等。电液伺服转向系统带宽仅为7.38 rad / s(1.17 Hz)。该研究有助于重型车辆动态转向系统的设计和优化。

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