基于改进模糊控制器的智能巡航车嵌入式运动控制系统设计

S. Arif, J. Iqbal, S. Munawar
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引用次数: 4

摘要

巡航控制是一种高效的汽车系统,在世界各地的许多车辆中使用。本文设计并仿真了一种智能巡航控制系统。该嵌入式运动控制系统是基于模糊逻辑控制的直流电机闭环速度控制系统,它可以作为任何混合动力汽车驱动系统的一部分。与传统模糊控制器相比,该改进模糊控制器的计算成本更低,可以使用普通的8位/16位低成本微控制器作为其硬件平台。分析了智能控制系统相对于传统控制技术的效率。仿真结果表明,该智能巡航控制系统可以较好地降低燃油经济性、设计维护成本和微处理器处理时间,从而使该智能巡航控制系统可以很容易地应用于任何需要高效、快速和低成本速度控制的车辆中。
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Design of embedded motion control system based on Modified Fuzzy Logic Controller for intelligent cruise controlled Vehicles
Cruise control is an efficient and effective automotive system being used in numerous vehicles around the world. In this work, an intelligent cruise control system is designed and simulated. This embedded motion control system is based on Fuzzy logic control for closed loop speed control of DC motor which can be a part of any hybrid vehicle drive system. This Modified Fuzzy Logic Controller (MFLC) has less computational cost as compared to conventional Fuzzy Logic Controller so that an ordinary 8-bit/16-bit low cost Microcontroller can be used as its hardware platform. Analysis is done on the efficiency of intelligent control system over conventional control technique. Simulation results shows that intelligent systems can better reduce fuel economy, design and maintenance cost and processing time of microprocessor, so that, this intelligent cruise control can be easily incorporated in any type of vehicle requiring efficient, fast and low cost speed control.
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