首页> 外文会议>DSCC2011;ASME dynamic systems and control conference;Bath/ASME symposium on fluid power and motion control >DEVELOPMENT OF DIAGNOSTIC ALGORITHMS FOR AN AIR BRAKE SYSTEM THEORY AND IMPLEMENTATION
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DEVELOPMENT OF DIAGNOSTIC ALGORITHMS FOR AN AIR BRAKE SYSTEM THEORY AND IMPLEMENTATION

机译:空气制动系统理论诊断算法的发展与实现

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In this paper, we consider the problem of designing an algo rithm for estimating the stroke of a pushrod of the air brake sys tem. The stroke of pushrod directly relates to the braking force available at the wheels and also affects the response time. The longer the stroke, the volume available for expansion is larger and correspondingly, the response is slower. The stroke depends on the clearance between the brake pad and the drum, which can vary due to variety of factors such as thermal expansion of drum and mechanical wear. Typical safety inspections of air brakes include the measurement of the stroke of the pushrod of each brake chamber. Regulations on trucks such Federal Motor Ve hicle Safety Standard (FMVSS) 121 require the inspection to be carried out at 90 psi supply pressure and at full brake applica tion. The evolution of the brake pressure depends on the stroke of the pushrod and the area of the treadle valve, which is con trolled by the driver. The treadle valve meters compressed air from the supply reservoir to the brake chamber. The proposed scheme requires the measurement of pressure and a model for predicting the evolution of brake chamber pressure in response to full application of the brake (brake pedal is fully depressed). We experimentally corroborate the effectiveness of the proposed algorithm.
机译:在本文中,我们考虑设计用于估计空气制动系统推杆行程的算法的问题。推杆的行程直接与车轮上可用的制动力有关,并且还影响响应时间。行程越长,可用于扩展的体积就越大,相应地,响应就越慢。行程取决于制动衬块和制动鼓之间的间隙,该间隙会由于多种因素而变化,例如制动鼓的热膨胀和机械磨损。空气制动器的典型安全检查包括每个制动腔推杆行程的测量。诸如《联邦机动车安全标准》(FMVSS)121之类的卡车法规要求,检查应在90 psi的供气压力和完全制动的情况下进行。制动压力的变化取决于推杆的行程和踏板阀的面积,该面积由驾驶员控制。踏板阀计量从供气仓到制动腔的压缩空气。所提出的方案需要测量压力,并需要一个模型来预测响应于制动的完全应用(制动踏板被完全踩下)的制动腔压力的变化。我们在实验上证实了所提出算法的有效性。

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