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首页> 外文期刊>Journal of Advanced Manufacturing Technology >IDENTIFICATION OF INTELLIGENT CONTROLS IN DEVELOPING ANTI-LOCK BRAKING SYSTEM
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IDENTIFICATION OF INTELLIGENT CONTROLS IN DEVELOPING ANTI-LOCK BRAKING SYSTEM

机译:开发防抱死制动系统中的智能控制器

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This paper presents about the development of an Antilock Braking System (ABS) using quarter vehicle model and a control structure is developed to represents an ABS and conventional braking model. Different type of controllers is proposed to develop the ABS model. Antilock braking system (ABS) is an important part in vehicle system to produce additional safety for driver. This system is known as one of the automobile’s active safety. In general, Antilock braking systems have been developed to reduce tendency for wheel lock and improve vehicle control during sudden braking especially on slippery road surfaces. In this paper, to deal with the strong nonlinearity in the design of ABS controller, an intelligent controller has been identified. The controllers such as PID and Fuzzy Logic are proposed to control the stopping distance and longitudinal slip of the wheel. Comparison results between these two controllers generated using Matlab SIMULINK.
机译:本文介绍了使用四分之一车辆模型的防抱死制动系统(ABS)的开发,并开发了一种表示ABS和常规制动模型的控制结构。提出了不同类型的控制器来开发ABS模型。防抱死制动系统(ABS)是车辆系统中的重要组成部分,可为驾驶员提供额外的安全性。该系统被称为汽车的主动安全性之一。通常,已开发出防抱死制动系统,以减少车轮抱死的趋势,并在突然制动期间尤其是在湿滑路面上改善车辆控制。为了解决ABS控制器设计中的强非线性问题,已经确定了一种智能控制器。提出了诸如PID和模糊逻辑的控制器来控制车轮的停止距离和纵向滑移。使用Matlab SIMULINK生成的这两个控制器之间的比较结果。

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