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Experimental Validation of an Antilock Braking System for Snowmobiles With Lateral Stability Considerations

机译:具有横向稳定性考虑的雪地摩托防姑式制动系统的实验验证

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Antilock braking systems are one of the most important safety systems for wheeled vehicles. They reduce the braking distance and, most importantly, help the user maintain controllability and steerability of the vehicle. This brief extends and adapts the concept of ABSs to tracked vehicles, in particular to snowmobiles. Snowmobiles are an interesting development platform for two main reasons: 1) track dynamics, despite being analogous to tire dynamics, present important differences that help understanding the features of the control algorithm and 2) snowmobiles are simple and rugged vehicles with a limited set of sensors, making the design of an effective control system challenging. This brief designs a track-deceleration-based ABS algorithm and tests it both in straight riding and cornering. The analysis shows that on snowmobiles, ABSs have negligible advantages in term of stopping distance, but are beneficial in terms of steerability and stability, especially during cornering.
机译:防姑娘制动系统是轮式车辆最重要的安全系统之一。它们降低了制动距离,最重要的是,帮助用户保持车辆的可控性和可操纵性。此简介延伸并突破了ABS的概念,涉及驾驶车辆,特别是雪地摩托。雪地摩托车是一个有趣的开发平台,有两种主要原因:1)轨道动态,尽管与轮胎动态类似,但目前有助于理解控制算法的特征和2)雪地摩托的功能是简单且坚固的车辆,具有有限的传感器。 ,使设计有效控制系统具有挑战性。本简要介绍基于轨道减速的ABS算法,并在直线骑行和转弯中测试。分析表明,在雪地摩托地上,在停止距离的期限内具有可忽略的优势,但在可操纵性和稳定性方面是有益的,特别是在转弯期间。

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