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Comparison between proportional, integral, derivative controller and fuzzy logic approaches on controlling quarter car suspension system

机译:控制四分之一汽车悬架系统的比例,积分,微分控制器和模糊逻辑方法的比较

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Developing and constantly changing technologies, efforts to achieve maximum efficiency with minimum fuel consumption, as well as the development of comfort and safety systems, have become very essential topic in car manufacturing and design. Whereas comfort and security were not given a high importance in the first produced cars, they are indispensable elements of today`s automobiles. Since public transportation uses road in large scale, the need for safety and repose is also increasing. Nowadays, vehicles have better security and comfort systems, which react very quickly to all kinds of loads and different cases of driving (braking, acceleration, high speed, cornering), where the tires can keep the road at its best, utilizing an advanced suspension system. In this study, a quarter-car model was fulfilled using LabVIEW (Laboratory Virtual Instrumentation Engineering Workbench) software. The control of this model has been realized by applying two different controllers. PID (proportional, integral, derivative) controller which is a common and conventional control method and the Fuzzy Logic controller which is considered as an expert system that is becoming more and more widely used. In both control approaches, controlling the suspension system was achieved successfully. However; It has been determined that controlling the system using Fuzzy Logic controller gave better dynamic response than applying the PID controller for the quarter car suspension model that has been used in the direction of this study.
机译:发展和不断变化的技术,以最小的燃油消耗实现最高效率的努力以及舒适性和安全系统的开发已成为汽车制造和设计中非常重要的主题。在首批生产的汽车中,舒适性和安全性并没有得到高度重视,但它们却是当今汽车中不可或缺的要素。由于公共交通大规模使用道路,因此对安全和休憩的需求也在增加。如今,车辆具有更好的安全性和舒适性系统,可以对各种负载和不同的驾驶情况(制动,加速,高速,转弯)做出非常快速的反应,轮胎可以利用先进的悬架使路面保持最佳状态系统。在这项研究中,使用LabVIEW(实验室虚拟仪器工程工作台)软件完成了四分之一汽车模型。该模型的控制已通过应用两个不同的控制器来实现。 PID(比例,积分,微分)控制器是一种常见的常规控制方法,而模糊逻辑控制器则被认为是一种专家系统,其应用越来越广泛。在两种控制方法中,都成功实现了对悬架系统的控制。然而;已经确定,与针对本研究方向使用的四分之一汽车悬架模型应用PID控制器相比,使用Fuzzy Logic控制器控制系统具有更好的动态响应。

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