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ER Suspension Units for Vibration Control of a Tracked Vehicle

机译:ER悬架单元,用于履带车辆的振动控制

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摘要

It is generally known that tracked vehicles are exposed to severe working environments such as rough road and complex ride behaviors. Therefore, high performance suspension units are required to isolate the vehicle body from terrain induced vibrations. This paper presents a novel type of suspension units utilizing an electro-rheological(ER) fluid. An inarm type of ER suspension units(ERSU) is modeled and its spring and damping characteristics are analyzed with respect to the intensity of the electric field. Subsequently, a 16 degree-of-freedom model for a tracked vehicle is adopted and a neuro-fuzzy skyhook controller is designed for the semi-active ERSU. In the control algorithm, the vertical speed of the body and the rotational angular speed of the wheel are used as fuzzy variables. Vibration control performances of the tracked vehicle subjected to bump and random excitations are evaluated in both the time and frequency domains. In addition, the mobility of the vehicle with the limited power absorption is investigated with respect to the road roughness.
机译:众所周知,履带车辆处于恶劣的工作环境中,例如崎rough不平的道路和复杂的行驶行为。因此,需要高性能的悬架单元以使车身与地形引起的振动隔离。本文提出了一种利用电流变(ER)流体的新型悬挂单元。模拟了一个手臂式的ER悬挂单元(ERSU),并针对电场强度分析了其弹簧和阻尼特性。随后,采用了用于履带车辆的16自由度模型,并为半主动ERSU设计了神经模糊的空中钩状控制器。在控制算法中,将车身的垂直速度和车轮的旋转角速度用作模糊变量。在时域和频域都评估了受到颠簸和随机激励的履带车辆的振动控制性能。此外,针对路面不平度,研究了功率吸收受限的车辆的机动性。

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