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A particle swarm optimization approach for sliding mode control of electromechanical valve actuator in camless internal combustion engines

机译:无凸轮内燃机电动阀执行器滑模控制的粒子群优化方法

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The performance of internal combustion engines can be improved using the camless structure. Replacing the crankshaft by a camless actuation technology leads to improvement in torque and power performance, fuel efficiency and pollutant emissions. In this paper, the control of an electromechanical valve actuator of camless engine is considered. Tracking the desired trajectory, achieving a soft landing, having a small transient time for opening and closing the valve and attenuating the disturbances are the main challenges in the control of this system. In this paper, sliding mode control is presented for dealing with all these issues. Moreover, to optimize the system response, the concept of sliding-mode control is incorporated into particle swarm optimization. The simulation results indicate the sliding mode controller variables tuned through a particle swarm optimization algorithm has a good performance in the realization of desired goals of the system and attenuation of the disturbance.
机译:使用无凸轮结构可以改善内燃机的性能。通过无凸轮致动技术替换曲轴可改善扭矩和功率性能,燃油效率和污染物排放。在本文中,考虑了无凸轮发动机的机电阀致动器的控制。跟踪期望的轨迹,实现软着陆,具有短的打开和关闭阀门的瞬态时间以及减轻干扰是该系统控制中的主要挑战。在本文中,提出了滑模控制来解决所有这些问题。此外,为了优化系统响应,将滑模控制的概念纳入了粒子群算法。仿真结果表明,通过粒子群优化算法调整的滑模控制器变量在实现系统预期目标和减小干扰方面具有良好的性能。

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