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Fuzzy ignition timing control for a spark ignition engine

机译:火花点火发动机的模糊点火正时控制

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摘要

It is well known that the optimum ignition timing, which gives the maximum brake torque (MBT) for a given engine design, varies with the rate of flame development and propagation in the cylinder. This depends, among other factors, on engine design and operating conditions, and on the properties of the air-fuel mixture. In modern engines the ignition timing is generally controlled by fixed open-loop schedules as functions of engine speed, load and coolant temperature. It is desirable that this ignition timing can be adjusted to the optimum level producing the best torque to obtain minimum fuel consumption and maximum available power. This paper presents an ignition timing control system based on fuzzy logic theory. A pressure sensor system was developed for the determination of combustion parameters and ignition control on a Ford 1600 cm{sup}3 four-cylinder engine fuelled with natural gas. Several tests were carried out in optimizing the pressure detection system. The results obtained provide important information compatible with intelligent control of the engine using fuzzy logic technology. Moreover, tests carried out to date using this technology show good results that fit quite well with the original engine output torque characteristics.
机译:众所周知,对于给定的发动机设计,最佳点火正时会产生最大制动扭矩(MBT),它会随着火焰在气缸中的发展和传播速率而变化。除其他因素外,这取决于发动机的设计和工况以及空气燃料混合物的特性。在现代发动机中,点火正时通常由固定的开环时间表控制,这是发动机转速,负载和冷却液温度的函数。期望的是,该点火正时可以被调节到产生最佳扭矩的最佳水平,以获得最小的燃料消耗和最大的可用功率。本文提出了一种基于模糊逻辑理论的点火正时控制系统。开发了用于确定燃烧参数和点火控制的以天然气为燃料的福特1600 cm {sup} 3四缸发动机的压力传感器系统。在优化压力检测系统方面进行了几次测试。获得的结果提供了与使用模糊逻辑技术对发动机进行智能控制兼容的重要信息。此外,迄今为止,使用该技术进行的测试均显示出良好的结果,非常符合原始发动机输出扭矩特性。

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