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首页> 外文期刊>Computers and Electronics in Agriculture >Small-radius turning performance of an articulated vehicle by direct yaw moment control.
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Small-radius turning performance of an articulated vehicle by direct yaw moment control.

机译:通过直接偏航力矩控制,铰接式车辆的小半径转弯性能。

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摘要

This paper reports the turning performance of an articulated vehicle in which applying direct yaw-moment control is applied to reduce the turning radius. In the proposed method, a braking force is applied to the inner tires when the articulation angle reaches its maximum in turning, which generates a yaw-moment around the vehicle's centre of gravity. The yaw-moment allows the vehicle to turn in a small radius. To evaluate the performance in tight turns, experiments were conducted using a wheel loader on paved ground. The vehicle's turning radius, yaw rate and side-slip angle were determined from the data measured using two global positioning systems and a fibre-optic gyro sensor. In addition, results of a simulation were compared with experimental results from a test vehicle. The turning radius at a braking pressure of 4 MPa was at least 0.41 m smaller than that of 0 MPa. Experimental and simulated results proved that generating a yaw-moment by applying one-sided braking forces during turning decreases the turning radius.Digital Object Identifier http://dx.doi.org/10.1016/j.compag.2011.02.006
机译:本文报告了一种铰接式车辆的转向性能,其中应用直接偏航力矩控制来减小转向半径。在所提出的方法中,当转弯时的铰接角达到最大时,制动力施加到内胎,这会在车辆重心周围产生偏航力矩。偏航力矩允许车辆以较小的半径转弯。为了评估急转弯时的性能,使用轮式装载机在铺好的地面上进行了实验。根据使用两个全球定位系统和光纤陀螺仪传感器测得的数据,确定车辆的转弯半径,偏航角速度和侧滑角。此外,将模拟结果与测试车辆的实验结果进行了比较。制动压力为4 MPa时的转弯半径比0 MPa小至少0.41 m。实验和模拟结果证明,在转弯时通过施加侧向制动力来产生偏航力矩会减小转弯半径。数字对象标识符http://dx.doi.org/10.1016/j.compag.2011.02.006

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