首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Electrical Engineering >Design of a Model-Based Fuzzy-PID Controller with Self-Tuning Scaling Factor for Idle Speed Control of Automotive Engine
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Design of a Model-Based Fuzzy-PID Controller with Self-Tuning Scaling Factor for Idle Speed Control of Automotive Engine

机译:基于模型的自整定比例因子模糊PID控制器在汽车发动机怠速控制中的设计

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摘要

Automotive engines spend a considerable portion of their life in idle state, where their characteristics are highly nonlinear and time varying. Efficient control of the engine in idle state significantly improves fuel economy, emission level and drivability. In this work, we proposed a combined fuzzy-PID idle speed controller which improves stability, fuel consumption and emission level, during normal operation as well as transient loads. In order to study the performance of control algorithm, XU7-1761cc gasoline port fuel injection engine has been modeled in idle state. This model calculates engine speed as a function of idle air valve position and ignition angle. This model demonstrated maximum of 8% error during parallel model in the loop and engine in the loop operation. After tuning the membership functions, performance of fuzzy-PID controller has been compared with baseline PID controller of engine control unit. Model in the loop simulation demonstrated that fuzzy-PID controller is more accurate than baseline PID controller, unconditionally stable and is able to reduce fuel consumption in the order of 14% compared to baseline controller. Finally, an experimental setup for real-time control of idle air valve based on proposed controller has also been developed.
机译:汽车发动机的大部分时间都处于怠速状态,其特性是高度非线性且随时间变化的。在怠速状态下对发动机的有效控制可显着提高燃油经济性,排放水平和驾驶性能。在这项工作中,我们提出了一种组合式模糊PID怠速控制器,该控制器在正常运行以及瞬态负载期间可提高稳定性,燃油消耗和排放水平。为了研究控制算法的性能,对XU7-1761cc汽油端口喷油发动机进行了怠速建模。该模型根据怠速空气阀位置和点火角来计算发动机转速。该模型在循环并行模型和引擎在循环运行过程中表现出最大8%的误差。调整隶属函数后,将模糊PID控制器的性能与发动机控制单元的基准PID控制器进行了比较。循环仿真中的模型表明,模糊PID控制器比基准PID控制器更准确,无条件稳定,并且与基准控制器相比,能够将燃油消耗降低14%左右。最后,还开发了一种基于所提出的控制器对怠速空气阀进行实时控制的实验装置。

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