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首页> 外文期刊>Shock and vibration >HIS-Based Semiactive Suspension Dual-Frequency-Range Switching Control to Improve Ride Comfort and Antiroll Performance
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HIS-Based Semiactive Suspension Dual-Frequency-Range Switching Control to Improve Ride Comfort and Antiroll Performance

机译:基于HIS的半主动悬架双频范围切换控制,可提高乘坐舒适性和防侧倾性能

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摘要

The parameter sensitivity analysis of a hydraulically interconnected suspension (HIS) system shows that the sensitivity of the vibration responses in the bounce and roll modes to the hydraulic parameters are complementary. A novel HIS-based semiactive control method was thereby proposed to improve ride comfort and antiroll performance. In addition, the classic sky-hook max-min damping switched strategy provides significant benefits around the body resonance, but otherwise performs similarly to, or sometimes even worse than, passive suspension. Therefore, a dual-frequency-range switching strategy, which has optimal max-min damping in both frequency ranges, was developed for improving the ride comfort in a wider frequency bandwidth. In this study, a 9-DOF HIS system dynamics model was established, and the hydraulically interconnected subsystem model was validated experimentally. Subsequently, the elastic and damping characteristics of the hydraulically interconnected subsystem, as well as the parameter sensitivity in bounce mode and roll mode, were analyzed. Next, the sensitive parameters were optimized under sinusoidal excitation at various frequencies, and a frequency-range selector used to determine the excitation frequency range and adjust the shock absorber damping was designed. Finally, simulations in the frequency domain and time domain show that the proposed HIS-based semiactive dual-frequency-range switching control suspension improves the ride comfort in a wider frequency bandwidth and enhances the antiroll performance in the transient and steady steering process.
机译:液压互连悬架(HIS)系统的参数敏感性分析表明,弹跳和横摇模式下的振动响应对液压参数的敏感性是互补的。从而提出了一种新颖的基于HIS的半主动控制方法,以改善乘坐舒适性和侧倾性能。此外,经典的“天钩式”最大-最小阻尼切换策略可为人体共振带来显着好处,但其性能与被动悬架类似,有时甚至比被动悬架差。因此,开发了在两个频率范围内均具有最佳的最大-最小阻尼的双频范围切换策略,以在更宽的频率带宽内改善乘坐舒适性。在这项研究中,建立了一个9自由度HIS系统动力学模型,并通过实验验证了液压互连子系统模型。随后,分析了液压互连子系统的弹性和阻尼特性,以及反弹模式和侧倾模式下的参数灵敏度。接下来,在各种频率的正弦激励下优化了敏感参数,并设计了用于确定激励频率范围和调整减震器阻尼的频率范围选择器。最后,在频域和时域的仿真结果表明,所提出的基于HIS的半主动双频范围切换控制悬架在更宽的带宽内提高了乘坐舒适性,并增强了瞬态和稳定转向过程中的侧倾性能。

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  • 来源
    《Shock and vibration》 |2019年第5期|5193593.1-5193593.16|共16页
  • 作者单位

    Nanchang Univ Sch Mechatron Engn Nanchang 330031 Jiangxi Peoples R China;

    Jiangxi Univ Technol Ctr Collaborat & Innovat Nanchang 330098 Jiangxi Peoples R China;

    Hunan Univ State Key Lab Adv Design & Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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