电气动制动系统的开发与建模

P. Karthikeyan, S. Subramanian
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引用次数: 15

摘要

制动系统是保证汽车在道路上行驶安全的主要系统。理想的制动系统应该用最少的努力来操作,并且应该在尽可能小的距离内停止车辆。本文研究了在货车、客车、牵引车、挂车等商用车上广泛应用的空气制动系统。影响车辆停车距离的重要参数之一是制动响应时间。提出的工作重点是电气动制动器的发展,这将减少空气制动系统的响应时间,从而提供了一个减少的停止距离。建立了一个将制动腔内的压力瞬变与提供给电气制动器的输入电压相关联的数学模型。通过与各种试验数据的比较,验证了该模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and modelling of an electropneumatic brake system
The brake system is the primary system in an automobile which ensures its safety on the road. The ideal brake system should operate with the least effort from the driver and should stop the vehicle within the minimum possible distance. This paper deals with the air brake system which is widely used in commercial vehicles such as trucks, buses and tractor-trailers. One of the important parameters which affect the stopping distance of a vehicle is the brake response time. The work presented focuses on the development of an electropneumatic brake which would decrease the response time of the air brake system thereby providing a reduced stopping distance. A mathematical model that correlates the pressure transients in the brake chamber to the voltage input provided to the electropneumatic brake has been developed. The efficacy of this model is tested by comparing its results with experimental data obtained from various test runs.
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